courses of study for b.e/b.tech. semester vi under

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09.12.2019 Regulations-2015R Sona College of Technology, Salem (An Autonomous Institution) Courses of Study for B.E/B.Tech. Semester VI under Regulations 2015R (CBCS) Branch: Civil Engineering S. No Course Code Course Title Lecture Tutorial Practical Credit Theory 1 U15CE601R Structural Analysis-II 2 2 0 3 2 U15CE602R Design of Steel Structures (Limit State Design) 2 2 0 3 3 U15CE603R Foundation Engineering 3 0 0 3 4 U15CE909R Professional Elective- Municipal Solid Waste Management 3 0 0 3 U15CE911R Professional Elective- Repair and Rehabilitation of Structures 5 U15CE912R Professional Elective- Building Services and Safety Regulations 3 0 0 3 U15CE915R Professional Elective- Prefabricated Structures U15CE916R Professional Elective- Smart Structures and Smart Materials 6 U15FT1001R Open Elective-Fundamentals of Fashion Design 3 0 0 3 U15ME1004R Open Elective-Industrial Safety U15ME1005R Open Elective-Maintenance Engineering U15CS1004R Open Elective-Mobile Application Development U15IT1003R Open Elective-Problem Solving Techniques using JAVA Programming U15IT1004R Open Elective-Python Programming U15ME1002R Open Elective-Renewable Energy Sources U15EE1006R Open Elective-Renewable Energy Systems Approved By Chairperson, Civil Engineering BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal Dr.R.Malathy Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar Copy to:- HOD/Civil Engineering, Sixth Semester BE Civil Students and Staff, COE (Page 1of 2)

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Page 1: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

Sona College of Technology, Salem

(An Autonomous Institution)

Courses of Study for B.E/B.Tech. Semester VI under Regulations 2015R (CBCS)

Branch: Civil Engineering

S. No Course Code Course Title Lecture Tutorial Practical Credit

Theory

1 U15CE601R Structural Analysis-II 2 2 0 3

2 U15CE602R Design of Steel Structures (Limit State Design) 2 2 0 3

3 U15CE603R Foundation Engineering 3 0 0 3

4 U15CE909R Professional Elective- Municipal Solid Waste Management

3 0 0 3 U15CE911R Professional Elective- Repair and Rehabilitation of Structures

5

U15CE912R Professional Elective- Building Services and Safety Regulations

3 0 0 3 U15CE915R Professional Elective- Prefabricated Structures

U15CE916R Professional Elective- Smart Structures and Smart Materials

6

U15FT1001R Open Elective-Fundamentals of Fashion Design

3 0 0 3

U15ME1004R Open Elective-Industrial Safety U15ME1005R Open Elective-Maintenance Engineering U15CS1004R Open Elective-Mobile Application Development

U15IT1003R Open Elective-Problem Solving Techniques using JAVA Programming

U15IT1004R Open Elective-Python Programming U15ME1002R Open Elective-Renewable Energy Sources U15EE1006R Open Elective-Renewable Energy Systems

Approved By

Chairperson, Civil Engineering BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal

Dr.R.Malathy Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to:-

HOD/Civil Engineering, Sixth Semester BE Civil Students and Staff, COE

(Page 1of 2)

Page 2: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

S. No Course Code Course Title Lecture Tutorial Practical Credit

Practical

7 U15CE604R Civil Engineering Software Application Laboratory 0 0 4 2

8 U15CE605R Environmental Engineering Laboratory 0 0 4 2

9 U15GE601AR Professional Development Skills 0 0 2 1

Total Credits 23

Approved By

Chairperson, Civil Engineering BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal Dr.R.Malathy Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to:-

HOD/Civil, Sixth Semester BE Civil Students and Staff, COE

(Page 2of 2)

Page 3: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15CE601R STRUCTURAL ANALYSIS-II L T P C

2 2 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Analyze the indeterminate structures by moment distribution method.

2. Analyze the indeterminate structures by flexibility matrix method.

3. Analyze the indeterminate structures by stiffness matrix method.

4. Analyze the multi storey frames by approximate methods.

5. Apply the finite element method to structural analysis.

UNIT-I MOMENT DISTRIBUTION METHOD 12

Basic concepts-Stiffness, distribution and carry over factors-Fixed end moments- Application to statically indeterminate beams and

frames (with and without sway): Deformed shape, shear force and bending moment diagram (unknowns restricted to three only).

UNIT-II FLEXIBILITY MATRIX METHOD 12

Basic concepts of flexibility method-Formulation of structure flexibility matrix- Application to statically indeterminate beams, rigid

and pin jointed frames (redundancy restricted to two only).

UNIT-III STIFFNESS MATRIX METHOD 12

Basic concepts of stiffness method- Formulation of structure stiffness matrix- Application to statically indeterminate beams, Rigid and

pin jointed frames (unknowns restricted to two only).

UNIT-IV APPROXIMATE METHOD OF ANALYSIS 12

Introduction - Analysis of multistory frames for gravity and lateral loads by approximate methods- Substitute frame-Portal and

cantilever methods.

UNIT-V FINITE ELEMENT METHOD 12

Introduction-Discretization of structure-Displacement function-Truss element-Concepts of: Beam element-Plane stress and plane

strain-Triangular elements.

TOTAL (L:30+T:30): 60 PERIODS

TEXT BOOKS:

1. Vaidyanathan R. and Perumal, P’ “Comprehensive structural Analysis-Vol. I & II”, Laxmi Publications, New Delhi, 2003.

2. Negi L.S. and Jangid R.S, “Structural Analysis”, Tata McGraw Hill Publications, New Delhi, 2003.

REFERENCES:

1. Punmia B.C, “Theory of Structures”, Standard Book House, New Delhi, 2000.

2. BhavaiKatti S.S, “Structural Analysis-Vol. 1 & Vol. 2”, Vikas Publishing Pvt Ltd, New Delhi, 2008.

3. Thandavamoorthy T.S, “Structural Analysis”, Oxford university press, New Delhi. 2011.

4. Pandit G.S, and Gupta S. P, “Structural Analysis a Matrix Approach”, Tata McGraw Hill Publications, New Delhi, 2008.

5. Senthil S, Panneerdhass, “ Finite Element Analysis”, Lakshmi Publication, Chennai,2017.

Page 4: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15CE602R DESIGN OF STEEL STRUCTURES (Limit State Design) L T P C

2 2 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Apply the IS code practice for the design of steel structural elements, analyses and design tension members.

2. Design the bolted and welded connection for both axial and eccentric forces.

3. Design compression members and base plates.

4. Design various types of flexural members.

5. Design various members of roof truss.

UNIT-I INTRODUCTION AND DESIGN OF TENSION MEMBERS 12

Review of concepts of plastic analysis. Structural steel sections and products, grades and mechanical properties of steel, advantages of

steel as structural material, types of steel structures. Introduction to Limit State Method of design of steel structures - failure criteria

for steel, limit states of strength and serviceability, structural stability, durability, corrosion, fatigue and fire resistance. Loads and load

combinations, characteristic strength and loads, partial safety factors. Tension members-Various forms-Modes of failure-Analysis and

design of axially loaded tension members.

UNIT-II DESIGN OF CONNECTION 12

Basic concepts of connection-Bolted connection: Types of bolts-modes of failures; Joints subjected to direct and eccentric load.

Welded connection: Types and strength of welds- Butt and fillet welds -Joints subjected to direct load and eccentric load.

UNIT-III DESIGN OF COMPRESSION MEMBERS 12

Design of axially loaded compression members: Section classifications - Effective length - Slenderness ratio- Classification of

column-Modes of failure; Design of axially loaded: Simple section-built-up sections - Design of lacings and battens- Design of single

and double angle strut-Continuous and discontinuous strut. Design of column bases: Types - Slab base.

UNIT-IV DESIGN OF BEAMS 12

Beams: Types of steel beams- Modes of failure -Design of laterally supported and unsupported beam: Rolled beam- built-up beams-

Design for strength and serviceability- Web yielding-Web crippling-Bearing stiffeners. Welded plate girder: Components-Stiffener-

Analysis and design using IS 800-2007of welded plate girder. Design principles of gantry girder.

UNIT-V DESIGN OF INDUSTRIAL STRUCUTRES 12

Design of industrial building: Roofing - cladding and wall material – Structural components and framing- Types of roof trusses -

components - Loads and Its combination-Wind load estimation for different type of zones-Design of purlins.

TOTAL (L:30+T:30): 60 PERIODS

TEXT BOOKS:

1. Duggal S.K, “Design of Steel Structures”, Tata McGraw-Hill Education, 2009.

2. Subramanian N, “Design of Steel Structures”, Oxford University Press, New Delhi 2008.

REFERENCES:

1. Bhavikatti S.S, “Design of Steel Structures”, I.K. International Publishing House Pvt. Ltd, New Delhi, 2010

2. Negi L.S, “Design of Steel Structures”, Tata McGraw Hill Publishing Pvt Ltd, New Delhi, 2007.

3. Jayagopal L.S, and Tensing, “Design of Steel Structures” Vikas Publishing House Pvt. Ltd, India, 2016.

4. Gambhir M.L, “Fundamentals of Structural Steel Design”, McGraw Hill Education India Pvt. Ltd, 2013

5. Shiyekar M.R, “Limit State Design in Structural Steel”, Prentice Hall of India Pvt. Ltd, 2013.

Page 5: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15CE603R FOUNDATION ENGINEERING L T P C

3 0 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Conduct sub surface investigation and select foundation based on soil condition.

2. Estimate the bearing capacity of soil based on shear and settlement criteria.

3. Analyze the proportion of various shallow foundations.

4. Calculate the load carrying capacity of piles.

5. Determine the earth pressure of retaining wall.

UNIT-I SITE INVESTIGATION AND SELECTION OF FOUNDATION 9

Scope and objectives-Methods of exploration-Depth of boring-Spacing of bore hole-Sampling techniques-Representative and

undisturbed sampling-methods - Split spoon sampler, Thin wall sampler, Stationery piston sampler-Penetration tests (SPT and SCPT)

- Bore log report- Selection of foundation based on soil condition.

UNIT-II SHALLOW FOUNDATION 9

Introduction-Location and depth of foundation-Codal provisions-Bearing capacity of shallow foundation on homogeneous deposits-

Terzaghi’s formula and BIS formula- Bearing capacity from in-situ tests (SPT, SCPT and plate load) - Settlement -Total and

differential settlement-Allowable settlements- Methods of minimizing settlements.

UNIT-III FOOTINGS AND RAFTS 9

Types of foundation- General design principles-proportioning of foundations-spread footings-combined footings-trapezoidal and strap

footings-Raft foundation-contact pressure distribution.

UNIT-IV PILE FOUNDATION 9

Types of piles and their function –Load carrying capacity of piles -static formula-dynamic formulae (Engineering news and Hileys)-

Load carrying capacity from insitu tests (SPT and SCPT)-Negative skin friction- Group capacity by different methods (Feld’s rule,

Converse-Labarre formula)-Settlement of pile and pile groups- pile load test (routine test only)-Under reamed piles.

UNIT-V RETAINING WALLS 9

Plastic equilibrium in soils-Active and passive states-Rankine’s theory- Coulomb’s wedge theory-Condition for critical failure plane-

Earth pressure on retaining walls of simple configurations-Rebhann’s and Culmann’s graphical method-Pressure on the wall due to

line load-Stability analysis of retaining walls.

TOTAL: 45 PERIODS

TEXT BOOKS:

1. Punmia B.C, “Soil Mechanics and Foundations”, Laximi Publications Pvt. Ltd, New Delhi, 16th edition, 2017.

2. Gopal Ranjan and Rao A.S.R, “Basic and Applied Soil Mechanics”, New Age International Publishers, New Delhi, 2016.

REFERENCES:

1. Venkatramaiah, C, “Geotechnical Engineering”, New Age International Publishers, New Delhi, 2017.

2. Murthy V.N.S, “Textbook of Soil Mechanics and Foundation Engineering; Geotechnical Engineering Series”, CBS Publishers

Distribution Ltd, New Delhi. 2016.

3. Braja m.das, principles of foundation Engineering, Thomson Asia pvt.ltd, Singapore, 2016.

4. Shenbaga R kaniraj, Design aids in Soil mechanics and Foundation, Tata Mc Graw –Hill Education-2011.

Page 6: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15CE909R MUNICIPAL SOLID WASTE MANAGEMENT L T P C

3 0 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Identify the sources, types and characteristics of solid wastes.

2. Choose the on-site storage methods and processing techniques.

3. Summarize the methods of collection and its components.

4. Outline the off-site processing techniques & equipments and resource recovery from solid wastes.

5. Evaluate the processing techniques and disposal methods for managing the municipal solid wastes.

UNIT-I SOURCES AND TYPES 9

Sources and types of solid wastes - Quantity - factors affecting generation of solid wastes; characteristics - methods of sampling and

characterization; Effects of improper disposal of solid wastes - public health effects. Principle of solid waste management - social and

economic aspects; Public awareness; Role of NGOs; Solid waste management rules 2016 - case studies.

UNIT-II ON-SITE STORAGE AND PROCESSING 9

On-site storage methods - Materials used for containers - on-site segregation of solid wastes - public health & economic aspects of

storage - options under Indian conditions - Critical evaluation of options.

UNIT-III COLLECTION AND TRANSFER 9

Methods of Residential and commercial waste collection - Collection vehicles - Manpower- collection routes - Analysis of collection

systems; Transfer stations - Selection of location, operation & maintenance; options under Indian conditions - Field problems- solving.

UNIT-IV OFF-SITE PROCESSING 9

Processing techniques and equipment; Resource recovery from solid wastes - Composting, incineration, Pyrolysis - Options under

Indian conditions - Case studies.

UNIT-V DISPOSAL 9

Dumping of solid waste; Sanitary landfills - Site selection, design and operation of sanitary landfills -Leachate collection and

treatment.

TOTAL: 45 PERIODS

TEXT BOOKS:

1. George Tchobanoglous, “Integrated Solid Waste Management”, McGraw-Hill Publishers,2003.

2. Vesilind P.A. and Rimer A.E, “Unit Operations in Resource Recovery Engineering”, Prentice Hall, Inc., 1981

3 Paul T Willams, “Waste Treatment and Disposal”, John Wiley and Sons, 2000

REFERENCES:

1. Manual on Municipal Solid Waste Management, CPHEEO, Ministry of Urban Development, Government of India, New Delhi,

2000.

2. Landreth R.E, and P.A and Rebers, “Municipal Solid Wastes -problems and Solutions”, Lewis Publishers, 2000.

3 Bhide A.D, and Sundaresan, B.B, “Solid Waste Management in Developing Countries”, INSDOC, 2003.

4. Ramachandra T.V, “Management of Municipal Solid Waste”, TERI press, New Delhi, 2009.

Page 7: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15CE911R REPAIR AND REHABILITATION OF STRUCTURES L T P C

3 0 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Describe the maintenance and repair strategies.

2. Identify the various patterns of cracks and moisture movement internally and externally.

3. Suggest the suitable repair materials for different deterioration.

4. Recommend right techniques to eliminate distressing in concrete and steel structures.

5. Suggest suitable repair techniques for different deterioration.

UNIT-I MAINTENANCE AND REPAIR STRATEGIES 9

Introduction-Facts and importance of maintenance-Various aspects of inspection-Assessment procedure for evaluating damaged

structure-Causes of deterioration-Diagnosis of causes -Flow charts for diagnosis.

UNIT-II BUILDING CRACKS AND MOISTURE PENETRATION 9

Building cracks: Causes -Diagnosis -Remedial measures -Thermal and Shrinkage cracks -Unequal loading -Vegetation and trees -

Chemical action -Foundation movements. Moisture penetration: Sources off dampness -Moisture movement from ground -Reasons for

ineffective damp proofing course -Roof leakage -Pitched roofs-Leakage of concrete slabs-Dampness in solid walls -Condensation -

Hygroscopic salts.

UNIT-III MATERIALS FOR REPAIR 9

Introduction-Concrete chemicals-Special elements for accelerated strength gain-Expansive cement-Polymer concrete-Sulphur

infiltrated concrete-Ferro cement- Fibre reinforced concrete-SIFCON-SIMCON-Rust eliminators and polymers coating for rebars

during repair-Foamed concrete-Mortar-Dry pack.

UNIT-IV REPAIRING OF CONCRETE AND STEEL STRUCTURES 9

Concrete structures: Methods of repair-Repairing-Spalling -Disintegration -Repairing of concrete floors and pavements. Steel

structures: Types and causes for deterioration -Preventive measures -Repair procedure -Brittle fracture -Lamellar tearing -Defects in

welded joints -Mechanism of corrosion -Design to protect against corrosion -Design and fabrication errors -Distress during erection.

UNIT-V STRENGTHENING OF EXISTING STRUCTURES 9

General principles -Relieving loads -Strengthening super structures: To overcome low member strength and deflection: Plating -Post

stressing -Jacketing -Bonded overlays - Reinforcement addition- Ferro cement overlay; Cracking and leakage: Vacuum concrete-

Gunite-Shotcrete-Epoxy injection-Mortar repair for cracks; Strengthening substructures : Shoring-Underpinning; Protection methods

of corrosion: Corrosion inhibitors-Corrosion resistant steel coating -Cathodic protection; Demolition techniques - Engineered

demolition methods-Case studies.

TOTAL: 45 PERIODS

TEXT BOOKS:

1. Guha P.K, “Maintenance and Repairs of Buildings”, New Central Book Agency Pvt. Ltd, Calcutta, 2011.

2. Vidivelli B, “Rehabilitation of Concrete Structures”, Standard Publishers Distributors, New Delhi, 2015.

REFERENCES:

1. Gambhir M.L, “Concrete Technology”, Tata McGraw Hill, 2012.

2 Neville A.M., Properties of Concrete, Fifth edition, Pearson Education Ltd.

2. Ravishankar.K, Krishnamoorthy.T.S, “Structural Health Monitoring, Repair and Rehabilitation of Concrete Structures”, Allied

Publishers, 2004.

3. Denison Campbell, Allen and Harold Roper, “Concrete Structures, Materials, Maintenance and Repair”, Longman Scientific and

Technical UK, 1991.

4. “Handbook on Repair and Rehabilitation of RCC Buildings” Published by Director General (Works), Central Public Works

Department, Government of India, Nirman Bhawan, 2002.

Page 8: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15CE912R BUILDING SERVICES AND SAFETY REGULATIONS L T P C

3 0 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Describe the basics of electrical systems in buildings

2. Explain the principles of illumination and design of these systems

3. Describe the basics of thermodynamics, refrigeration principles and air conditioning systems

4. Discuss the fire safety regulations and installation of fire safety equipments and systems

5. Explain the water supply and sewerage systems for buildings

UNIT-I ELECTRICAL SYSTEMS IN BUILDINGS 9

Basics of electricity- Single / Three phase supply- Protective devices in electrical installations- Earthing for safety- Types of earthing-

ISI specifications- Types of wires, wiring systems and their choice- Planning electrical wiring for building- Main and distribution

boards- Transformers and switch gears- Layout of substations.

UNIT-II PRINCIPLES OF ILLUMINATION & DESIGN 9

Visual tasks- Factors affecting visual tasks- Modern theory of light and colour- Synthesis of light- Additive and subtractive synthesis

of colour- Luminous flux- Candela- Solid angle illumination- Utilisation factor- Depreciation factor- MSCP- MHCP- Lans of

illumination- Classification of lighting- Artificial light sources- Spectral energy distribution- Luminous efficiency- Colour

temperature- Colour rendering. Design of modern lighting- Lighting for stores, offices, schools, hospitals and house lighting.

Elementary idea of special features required and minimum level of illumination required for physically handicapped and elderly in

building types.

UNIT-III REFRIGERATION PRINCIPLES & APPLICATIONS 9

Thermodynamics- Heat- Temperature, measurement transfer- Change of state- Sensible heat- Latent heat of fusion, evaporation,

sublimation- saturation temperature- Super heated vapour- Subcooled liquid- Pressure temperature relationship for liquids-

Refrigerants- Vapour compression cycle- Compressors- Evaporators- Refrigerant control devices- Electric motors- Starters- Air

handling units- Cooling towers- Window type and packaged air-conditioners- Chilled water plant- Fan coil systems- Water piping-

Cooling load- Air conditioning systems for different types of buildings- Protection against fire to be caused by A.C. Systems

UNIT-IV FIRE SAFETY REGULATIONS AND INSTALLATION 9

Causes of fire in buildings- Safety regulations- NBC- Planning considerations in buildings like non-combustible materials,

construction, staircases and lift lobbies, fire escapes and A.C. systems. Special features required for physically handicapped and

elderly in building types- Heat and smoke detectors- Fire alarm system, snorkel ladder- Fire lighting pump and water storage- Dry and

wet risers- Automatic sprinklers

UNIT-V WATER SUPPLY AND SEWERAGE SYSTEM FOR BUILDINGS 9

Plumbing fixtures and fixture fittings- Water conserving fittings- Over flows- Strainers and connectors- Prohibited fixtures- Special

fixtures- Installation of water closet- Urinals - Flushing devices- Floor drains- Shower stall- Bath tub- Bidets- Minimum plumbing

facilities- Rain water harvesting systems- Necessity- Construction- Different types

TOTAL: 45 PERIODS

TEXT BOOKS:

1. David V. Chadderton Building Services Engineering Taylor & Francis, 2000

2. John Knight , W.P.Jones “Newnes Building services” Routledge 2003

REFERENCES:

1. E.R.Ambrose, “Heat Pumps and Electric Heating”, John and Wiley and Sons, Inc., New York, 2009

2. Handbook for Building Engineers in Metric systems, NBC, New Delhi, 2011

3. Philips Lighting in Architectural Design, McGraw-Hill, New York, Latest edition

4. R.G.Hopkinson and J.D.Kay, “The Lighting of buildings”, Faber and Faber, London, 1972

5. William H.Severns and Julian R.Fellows, “Air-conditioning and Refrigeration”, John Wiley and Sons, London, 1988

6. A.F.C. Sherratt, “Air-conditioning and Energy Conservation”, The Architectural Press, London, 2007

Page 9: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15CE915R PREFABRICATED STRUCTURES L T P C

3 0 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Apply the various types of prefabrication systems.

2. Calculate the handling and erection stresses.

3. Prepare dimensioning and detailing of joints.

4. Perform erection of the prefab structure.

5. Design pre-fabricated units.

UNIT-I INTRODUCTION 9

Need for prefabrication - Principles - Materials - Modular co-ordination - Standardization - Systems Production - Transportation -

Erection Disuniting of Structures.

UNIT-II HANDLING AND ERECTION STRESSES 9

Handling and erection stresses - Application of pre stressing of roof members-Floor systems - Two way load bearing slabs - Wall

panels.

UNIT-III DIMENSIONING AND DETAILING OF JOINTS 9

Dimensioning and detailing of joints for different structural connections-Construction joints and expansion joints.

UNIT-IV ERECTION OF STRUCTURES 9

Production - Transportation and erection - Organizing of production - Storing and erection equipment - Shuttering and mould design -

Dimensional tolerances, erection of R.C. structures -Total prefabricated buildings.

UNIT-V DESIGN OF PRE FABRICATED UNITS 9

Prefabricated units for Industrial structures, Multi-storied buildings and water tanks etc., Application of pre stressed concrete in

prefabrication.

TOTAL: 45 PERIODS

TEXT BOOKS:

1. Hubert Bachmann, Alfred Steinle, “Precast Concrete Structures”, Ernst and Sohn GMBH & Co., K.G., 2011.

2. “Structural design manual”, Precast concrete connection details, Society for the studies in the use of precast concrete, Netherland

BetorVerlag, 2009.

REFERENCES:

1. Lewicki B, “Building with Large Prefabricates”, Elsevier Publishing Company, Amsterdam / London / New York, 1966.

2. Levi M, (2000), Precast concrete materials, Manufacture properties and usage, Applied Science Publishers, London.

3. Kim S. Elliott, “Precast Concrete Structures” Butter-Heinemann, 2002.

4. LassloMokk, “Prefabricated Concrete for Industrial and Public Sectors, AkademiaiKiado”, Budapest, 1964.

Page 10: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15CE916R SMART STRUCTURES AND SMART MATERIALS L T P C

3 0 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Outline the fundamentals of Smart material.

2. Describe the measuring techniques using smart materials for solving civil engineering problems.

3. Select suitable sensors for analyzing various measurements.

4. Adapt the different actuator material in structural components.

5. Apply signal processing and control system in smart structures.

UNIT-I INTRODUCTION 9

Introduction to smart materials and Structures - Smart-Bridge- Instrumented structures functions and response - Sensing systems - Self

diagnosis - Signal processing consideration - Actuation systems and effectors.

UNIT-II MEASURING TECHNIQUES 9

Strain Measuring Techniques using Electrical strain .gauges, Types - Resistance- Capacitance - Inductance - Wheatstone bridges -

Pressure transducers - Load cells - Temperature compensation - Strain Rosettes-Field applications.

UNIT-III SENSORS 9

Sensing technology - Types of sensors - Physical measurement using Piezo electric strain measurement - LVDT - Fiber optic

techniques . chemical and bio-chemical sensing in structural assessment - Absorptive chemical sensors - Spectroscopes - Fibre optic

chemical sensing systems and distributed measurement- Field applications.

UNIT-IV ACTUATORS AND SMART MATERIALS 9

Actuator techniques - Actuator and actuator materials - Piezoelectric and electrostrictive material - Magneto structure material - shape

memory alloys - Electro rheological fluids- Electromagnetic actuation - Role of actuators and actuator materials - displacement

actuators, force actuators, power actuators, vibration dampers - Field applications.

UNIT-V SIGNAL PROCESSING AND CONTROL SYSTEMS 9

Data acquisition and processing - Signal processing and control for smart structures - Sensors as geometrical processors - Signal

processing - Signal-Conditioning devices; Constant voltage, constant current and pulse drive methods; structural dynamics and

identification techniques - Control system - Linear and non-linear , passive, semi-active and active control, feedback and feed forward

control strategies - Field applications.

TOTAL: 45 PERIODS

TEXT BOOKS:

1. Brain Culshaw, “Smart Structure and Materials”, Artech House, 1998.

2. Srinivasan, A.V and Michael Mc Farland . D, “ Smart Structures - Analysis and Design”, Cambridge University Press,2001

REFERENCES:

1. Srinath L. S, “Experimental Stress Analysis”, Tata McGraw Hill, 1998.

2. Dally J. W, and Riley W. F, “Experimental Stress Analysis - Tata McGraw Hill, 1998.

3. Azfal Suleman- Smart Structures, “Applications and Related Technologies”, Springer, 2002.

Page 11: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15CE604R CIVIL ENGINEERING SOFTWARE APPLICATION LABORATORY L T P C

0 0 4 2

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Competently use the software packages for structural analysis.

2. Competently uses excel to undertake engineering calculations.

3. Acquires hands on experience in design and preparation of structural drawings for concrete / steel structures normally

encountered in civil engineering practice.

COURSE CONTENTS

Analysis of structural member using Standard Software Package: Analysis of 2D beams, columns, slab and footing; Analysis of

2D and 3D frames- Analysis of single and two storey building -Roof trusses.

Development of Program using Excel (RCC and Steel) : Design of Flexural members-Beams and slabs-Design of compression

members-Column-Design of isolated footing-Design of staircase-Design of roof trusses-Concrete mix design.

Detailing of structural element using Standard Drafting Package: Detailing of reinforced concrete beams-Detailing of reinforced

concrete slabs-Detailing of column-Detailing of isolated footing-Detailing of staircase-Detailing of roof trusses.

TOTAL: 60 PERIODS

Page 12: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15CE605R ENVIRONMENTAL ENGINEERING LABORATORY

L T P C

0 0 4 2

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Test the water and wastewater and their different characteristics as per standards

2. Recommend the degree of treatment required for the water and wastewater.

3. Apply the technical concepts and ways to solve engineering problems by conducting experiments.

COURSE CONTENTS

1. Sampling and preservation methods and significance of characterization of water and waste water.

2. Determination of – pH, turbidity and Hardness

3. Determination of iron & fluoride

4. Determination of residual chlorine

5. Determination of Chlorides

6. Determination of Ammonia Nitrogen

7. Determination of Sulphate

8. Determination of Optimum Coagulant Dosage

9. Determination of available Chlorine in Bleaching powder

10. Determination of dissolved oxygen

11. Determination of suspended, volatile and fixed solids

12. B.O.D. test

13. C.O.D. test

14. Introduction to Bacteriological Analysis (Demonstration only)

TOTAL: 60 PERIODS

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09.12.2019 Regulations-2015R Regulations-2014

Page 14: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

Sona College of Technology, Salem

(An Autonomous Institution)

Courses of Study for B.E/B.Tech. Semester VI under Regulations 2015R (CBCS)

Branch: Mechanical Engineering

Approved By

Chairman, Mechanical Engineering BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal

Dr.D.Senthilkumar Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to:-

HOD/Mechanical Engineering, Sixth Semester BE Mechanical Students and Staff, COE

(Page 1 of 3)

S. No Course Code Course Title Lecture Tutorial Practical Credit

Theory

1 U15ME601R Finite Element Method 3 0 0 3

2 U15ME602R Turbo machines 3 0 0 3

3 U15ME603R Design of Transmission System 3 0 0 3

4 U15ME604R Metrology and Measurements 3 0 0 3

5 Professional Elective * 3 0 0 3

6 Open Elective ** 3 0 0 3

Practical

7 U15GE601BR Soft Skills and Aptitude-IV 0 0 2 1

8 U15ME605R Computer Aided Analysis Laboratory 0 0 4 2

9 U15ME606R Metrology and Measurements Laboratory 0 0 4 2

10 U15ME607R Turbo Machines Laboratory 0 0 4 2

Total Credits 25

Page 15: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

Approved By

Chairman, Mechanical Engineering BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal

Dr.D.Senthilkumar Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to:-

HOD/Mechanical Engineering, Sixth Semester BE Mechanical Students and Staff, COE

(Page 2 of 3)

S. No Course Code Course Title Lecture Tutorial Practical Credit

*Professional Elective

1 U15ME914R Data Analytics 3 0 0 3

2 U15ME915R Object Oriented Programming using C++ 3 0 0 3

3 U15ME916R Machine Learning 3 0 0 3

4 U15ME917R Java Programming 3 0 0 3

5 U15ME918R Python: Programming, Data Structure and

problem solving 3 0 0 3

Page 16: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

Approved By

Chairman, Mechanical Engineering BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal

Dr.D.Senthilkumar Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to:-

HOD/Mechanical Engineering, Sixth Semester BE Mechanical Students and Staff, COE

(Page 3 of 3)

S. No Course Code Course Title Lecture Tutorial Practical Credit

**Open Elective

1 U15CE1002R DISASTER MANAGEMENT 3 0 0 3

2 U15CE1003R ENERGY EFFICIENCY AND GREEN

BUILDING 3 0 0 3

3 U15CE1004R MUNICIPAL SOLID WASTE MANAGEMENT 3 0 0 3

4 U15CS1001R BIG DATA ANALYTICS 3 0 0 3

5 U15CS1002R CLOUD COMPUTING 3 0 0 3

6 U15CS1003R INTERNET OF THINGS 3 0 0 3

7 U15CS1004R- MOBILE APPLICATION DEVELOPMENT 3 0 0 3

8 U15EE1006R RENEWABLE ENERGY SYSTEMS 3 0 0 3

9 U15IT1003R PROBLEM SOLVING TECHNIQUES USING

JAVA PROGRAMMING 3 0 0 3

10 U15IT1004R PYTHON PROGRAMMING

3 0 0 3

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09.12.2019 Regulations-2015R Regulations-2014

Pre-requisites subject: Engineering Mathematics, Numerical Methods, Strength of Materials and

Heat and mass transfer

Course Outcomes

Upon completion of this course the students will be able to

CO1 Discuss the fundamental concepts of classical method, discretization and

application of Gaussian elimination.

CO2 Solve one dimensional problem for the elements such as bar and truss.

CO3 Analyze the two dimensional elements problems like scalar variable

problems and vector variable problems.

CO4 Utilize the concepts of iso-parametric elements and numerical integration

for real time applications

CO5 Apply the concept of finite element in heat transfer and fluid mechanics problems.

Unit I INTRODUCTION L 9 T 0

Historical background- mathematical modeling- Application to the continuum-Discretization

- Matrix algebra - Gaussian elimination - Governing equations for continuum-Classical

Techniques in FEM - Weighted residual method - Ritz method - engineering applications of

FEA.

Unit II ONE DIMENSIONAL PROBLEMS L 9 T 0

Finite element modeling- Coordinates and shapes functions- Potential energy approach -

Galarkin approach- Assembly of stiffness matrix and load vector- linear bar element - nodal

approximation- development of shape functions- quadratic shape functions - element

matrices and vectors- extension to plane truss- development of element equations –

assembly- element connectivity -global equations- solution methods.

Unit III TWO DIMENSIONAL PROBLEMS L 9 T 0

Scalar Variable Problems- Finite element modeling- CST element- Element equations, Load

vectors and boundary conditions – Assembly - Vector Variable problems- Elasticity

equations- Plane Stress, Plane Strain and Axisymmetric problems- Formulation- element

matrices- Assembly - boundary conditions and solutions.

Course Code

U15ME601R

L

T

P

C

Course Name FINITE ELEMENT METHOD 3 0 0 3

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09.12.2019 Regulations-2015R Regulations-2014

Unit IV ISOPARAMETRIC ELEMENTS L 9 T 0

Natural coordinates, Iso parametric elements, Four node quadrilateral element– Shape

functions- Element stiffness matrix and force vector – Numerical integration – Gauss

quadrature.

Unit V APPLICATIONS OF FEM IN HEAT TRANSFER & FLUID

MECHANICS

L 9 T 0

One dimensional heat transfer element – application to one-dimensional heat transfer

problems and fluid mechanics problems- scalar variable problems in 2-Dimensions –

application to two- dimensional heat transfer problems.

Total Number of hours: 45

Learning Resources

Text Books

1. Chandrupatla & Belagundu, “Introduction to Finite Elements in Engineering”, Prentice-Hall of India,

Eastern Economy Editions, 4th Edition, 2015, ISBN-13: 978-9332551824.

2. David V.Hutton, ”Fundamentals of Finite Element Analysis”, Tata McGraw-Hill Edition, 2005, ISBN:

9780070601222.

Reference Books

1. Logan D.L., “A First course in the Finite Element Method”, Fourth Edition, Cengage Learning, 5th

Edition, 2012, ISBN-13: 9788131517307.

2. Rao S.S., “The Finite Element Method in Engineering”, Fourth Edition, Published by Elsevier, 5th

Edition, 2010, Hardcover ISBN: 9781856176613, eBook ISBN: 9780080952048

3. P.Seshu, “Text Book of Finite Element Analysis”, Prentice-Hall of India Pvt. Ltd., NewDelhi, 2007.

ISBN-978-203-2315-5.

4. J.N.Reddy, “An Introduction to the Finite Element Method”, McGraw-Hill International Editions,

2005, 3rd Edition, ISBN: 9780070607415.

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09.12.2019 Regulations-2015R Regulations-2014

Course Code U15ME602R L T P C

Course Name TURBOMACHINES 3 0 - 3

Pre-requisites subject: Engineering Physics and Fluid Mechanics

Course Outcomes

Upon completion of this course the students will be able to

CO1 Discuss the theory of turbo machine and the concept of energy equation of

turbo machine.

CO2 Explain the classification, working and construction of velocity triangle and

performances of hydraulic turbines.

CO3 Evaluate the performance of centrifugal pumps and explain the performance

curves for pumps

CO4 Analyze the performance of steam turbines using velocity triangle.

CO5 Identify the methods of improving the efficiency of Gas turbines.

Unit I INTRODUCTION L 9 T 0

Fluid machines-Classification. Turbo machines - parts of turbo machines. Comparison

between positive displacement machines and turbo machines. Types of turbo

machines. Euler’s energy transfer equation –components of energy transfer.

Unit II HYDRAULIC TURBINES L 9 T 0

Hydraulic turbines-classification and working principle. Pelton wheel turbine -Francis

turbine -Kaplan turbine- Velocity triangle-work done- Efficiencies- Performance

calculations.

Unit III PUMPS L 9 T 0

Centrifugal pumps – classification – working - Velocity triangle-work done- Efficiencies-

Specific speed-Performance calculations. Priming, Cavitation. Comparison between

positive displacement pumps and roto dynamic pumps.

Unit IV STEAM TURBINES L 9 T 0

Introduction. Classification-Impulse and Reaction. Compounding –need for

compounding-methods of compounding. Velocity diagram - condition for maximum

efficiency-degree of reaction .simple problems on single stage turbines and governing

of turbines.

Unit V GAS TURBINES AND JET ENGINES L 9 T 0

Brayton cycle – open cycle and closed cycle. Methods of improving the efficiency of a simple cycle. Jet

engine-construction and working of turbo jet engine, ram jet and pulse jet engine.

Total Number of hours: 45

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Learning Resources

Text Books

1. B.K.Venkanna, “Fundamentals of Turbomachinery” PHL Learning Private Limited,

2014.

2. Yahya.S.M., ‘Turbines, Compressores and Fans”, Tata McGraw-Hill, 2010.

Reference Books

1. Bansal, R.K., Fluid Mechanics and Hydraulics Machines, Laxmi Publications (P)

Ltd., New Delhi.2010

2. Sukumar Pati., “Fluid Mechanics and Hydraulics Machines”, Tata McGraw Hill

publications (P) Ltd, New Delhi, 2012

3. Kumar. K.L., Engineering Fluid Mechanics (VII Ed.) Eurasia Publishing House (P)

Ltd., New Delhi, 1995.

4. Ganesan .V., “Gas Turbines”, Tata McGraw-Hill, New Delhi, 2002.

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09.12.2019 Regulations-2015R Regulations-2014

Course Code U15ME603R L T P C

Course Name DESIGN OF TRANSMISSION SYSTEMS 3 - - 3

Pre-requisites subject: Kinematics of Machinery & Design of Machine elements

Course Outcomes

Upon completion of this course the students will be able to

CO1 Design the various transmission systems and its elements

including flexible elements for complex mechanisms.

CO2 Design the spur and helical gear with related concepts and other

gear designing terms.

CO3 Design the bevel and worm gear based for industrial applications.

CO4 Design the gear box for both constant speed and variable number

of speeds in the transmission systems.

CO5 Design the clutches and Brakes and also able to utilize the same to

solve practical problems.

Unit I DESIGN OF TRANSMISSION SYSTEMS FOR FLEXIBLE

ELEMENTS

L 9 T 0

Design of flat belt, V - Belt and pulleys - Selection of flat belts and pulleys – V belts and pulleys – Selection of transmission chains and sprockets - Introduction to Wire ropes and modern

transmission systems.

Unit II DESIGN OF SPUR GEARS AND PARALLEL AXIS HELICAL

GEARS

L 9 T 0

Design of Spur Gear: Terminology - Speed ratios and number of teeth -Force analysis - Tooth

Stresses - Dynamic effects – fatigue strength - factor of safety - gear materials.

Design of helical gear :Terminology – Speed ratios and number of teeth – Force analysis – Tooth stresses – Dynamic effects – Fatigue strength – Factor of safety – Gear materials – Module and

face width – Pressure angle in the normal and transverse plane – Equivalent number of teeth –

Forces and stresses – Estimating the size of the helical gears

Unit III DESIGN OF BEVEL AND WORM GEARS L 9 T 0

Design of Straight bevel gears: Tooth terminology- Tooth forces and stresses – Equivalent number of teeth.

Worm Gear: Terminology – Thermal capacity – materials - forces and stresses and Efficiency -

Design of Worm gear – Estimating the size of the worm gear pair.

Unit IV DESIGN OF GEAR BOXES L 9 T 0

Geometric progression – Standard step ratio – Ray diagram – Kinematics layout – Design of sliding mesh gear box – Constant mesh gear box – Design of multi speed gear box.

Unit V DESIGN OF CLUTCHES AND BRAKES L 9 T 0

Design of plate clutches – axial clutches - cone clutches - internal expanding rim clutches -

internal and external shoe brakes.

Total Number of hours: 45

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09.12.2019 Regulations-2015R Regulations-2014

Learning Resources

Text Books

1. Bhandari V.B, “Design of Machine Elements”, Tata McGraw-Hill Education, 2010.

2. Kurt M. Marshek; Robert C. Juvinall, “Fundamentals of Machine Component

Design”, 5th Edition, Wiley 2011.

3. Robert L Norton, “Machine Design - An Integrated Approach”, Pearson Education,

New Delhi, 2003.

Reference Books

1. Joseph E. Shigley, Charles R. Mischke and Charles R. Mischke“Mechanical

Engineering Design”, McGraw – Hill International Editions, 2003.

2. Prabhu, T.J., “Design of Transmission Elements”, Prabhu publisher, 2003.

3. Steven R. Schmid, Bernard J. Hamrock, Bo. O. Jacobson.,“ Fundamentals of

Machine Elements”, CRC Press., 2013.

4. G.M. Maitra. and L.V. Prasad., “Hand book of Mechanical Design”, McGraw-Hill

Inc., US, New edition 1985.

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09.12.2019 Regulations-2015R Regulations-2014

Course Code U15ME604R L T P C

Course Name METROLOGY AND MEASUREMENTS 3 - - 3

Pre-requisites subjects: Engineering Physics – Manufacturing Technology – I & II

Course Outcomes

Upon completion of this course the students will be able to

CO1 Explain fundamentals of General Measurement system and Errors in

Measurement.

CO2 Discuss fundamentals of Linear and Angular Measurements and various

devices used for measuring the different parameters.

CO3

Describe screw thread terminology, errors in threads, measurement of

various elements of thread, Gear and their types, gear terminology,

measurement of various elements of gears.

CO4 Analyze the working principle of various precision instruments based on

laser, machine tool metrology and coordinate measuring machine.

CO5 Discuss the measurement of force, power, torque, flow and temperature.

Unit I CONCEPT OF MEASUREMENT L 9 T 0

Introduction to Metrology - General concept - Generalized measurement system - Units and

standards - Types of standards - Measuring instruments- Sensitivity, readability, repeatability,

range of accuracy, precision - Static and dynamic response – Systematic environment - Their

effect on Precision and Accuracy and random errors - Correction, calibration, interchangeability.

Unit II LINEAR AND ANGULAR MEASUREMENT L 9 T 0

Linear measuring instruments - Vernier, micrometer, dial gauge, height gauge, depth gauge, slip

gauges and classification, Interferometery, optical flats, limit gauges - Comparators: mechanical,

pneumatic and electrical types, applications. Angular measurements - Sine bar, optical bevel

protractor – Autocollimator - angle alignment telescope - applications.

Unit III FORM MEASUREMENT L 9 T 0

Principles and Methods of straightness - Flatness measurement - Thread measurement – floating

carriage micrometer, gear measurement – gear tooth vernier, gear tester, surface finish

measurement - Roundness measurement - Applications.

Unit IV ADVANCES IN METROLOGY L 9 T 0

Basic concept of laser advantages of laser in metrology - laser Interferometers – types - DC and

AC Lasers interferometer - application in linear, angular measurements and machine tool

metrology - Basic concept of Coordinate measuring machine (CMM) - Constructional features -

types, applications - digital devices - computer aided inspection.

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Unit V COMPUTER AIDED QUALITY CONTROL AND FMS L 9 T 0

Force, torque, power - mechanical, Pneumatic, Hydraulic and Electrical type – strain gauge,

piezoelectric type sensors – load cell –pressure sensors – dynamometer – transducers - Flow

measurement: Venturimeter, Orifice meter, rotameter, Pitot tube – special flow measurement -

Temperature: bimetallic strip, thermocouples, electrical resistance thermometer – Reliability and

Calibration.

Total Number of hours: 45

Learning Resources

Text Books

1. Jain R.K., “Engineering Metrology”, Khanna Publishers, 2009

2. Alan S. Morris, “The Essence of Measurement”, Prentice Hall of India, 2001

Reference Books

1. Gupta S.C, “Engineering Metrology”, Dhanpat rai Publications, 2005

3. Jayal A.K, “Instrumentation and Mechanical Measurements”, Galgotia Publications

2000

4. Bewoor “Metrology & Measurement” Tata McGraw-Hill Education, 2009

5. Bucher and Jay L ”The Metrology Handbook, Hardcover, 2012

6. Raghavendra and Krishnamurthy Engineering Metrology and Measurements,

Paperback, 2013.

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09.12.2019 Regulations-2015R Regulations-2014

Course Code U15ME605R L T P C

Course Name Computer Aided Analysis Laboratory - - 4 2

Pre-requisites subject: Computer Aided Drafting Laboratory, Strength of material laboratory and Heat

and mass transfer laboratory

Course Outcomes

Upon completion of this course the students will be able to

CO1 Analyze displacement, stress and strain of one dimensional and two

dimensional element problems using analysis software.

CO2 Solve displacement, stress ,strain and temperature distribution of 2D

components using analysis software

CO3 Develop a model, analyze and simulation of the real time problems using

modeling and analysis software.

LIST OF EXPERIMENTS

Analysis:

1. Analysis of ID element such as bar, rod and truss

2. Analysis of beams (cantilever, simply supported and fixed beam)

3. Analysis of an axis-symmetric element

4. Mode frequency analysis of beams (cantilever, simply supported and fixed beam)

5. Heat transfer analysis of 2D components (conduction and convection)

6. Harmonic analysis of 2D components

7. CAD Modeling and analysis of crane hook

8. CAD modeling and analysis of heat sink ,heat exchanger and fin

9. CAD modeling and analysis of cell phone tower and electric tower

10. CAD modeling and static analysis of chassis frame

Simulation:

1. Simulation of Air conditioning system with condenser and evaporator temperatures as input to

estimate COP

2. Simulation of cam and follower mechanism.

3. Simulation of Spring Mass Damper System Control

4. Simulation of heat exchanger process

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LIST OF EQUIPMENTS:

60 systems (Intel core 2 quad [email protected],1033MHz FSB cache, 2GB RAM, 250GB HDD, 18.5” TFT

Monitor)

LIST OF SOFTWARE (For a Batch of 30 Students)

(a) ANSYS 12.0

(b) MATLAB 7.0

Total Number of hours: 60

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09.12.2019 Regulations-2015R Regulations-2014

Course Code U15ME607R L T P C

Course Name TURBO MACHINES LABORATORY - - 4 2

Course Outcomes

Upon completion of this course the students will be able to

CO1 Analyze the performance of the various pumps and turbines (Pelton, Francis and

Kaplan turbine).

CO2 Conducting performance test on centrifugal blower.

CO3 Discuss the Performance test on Turbo alternator plant.

Total Number of hours: 60

LIST OF EXPERIMENTS

1. Conducting experiments and drawing the characteristic curves of centrifugal pump / submersible

pump

2. Conducting experiments and drawing the characteristic curves of Gear pump.

3. Conducting experiments and drawing the characteristic curves of Pelton wheel.

4. Performance Test on Steam Boiler.

5. Conducting experiments and drawing the characteristics curves of Francis turbine.

6. Conducting experiments and drawing the characteristic curves of Kaplan turbine.

7. Performance test on centrifugal blower.

8. Performance test on Steam turbine.

List of Equipments (for a batch of 30 students)

1. Centrifugal pump/submersible pump setup

2. Gear pump setup

3. Pelton wheel turbine setup

4. Francis turbine setup

5. Kaplan turbine setup

6. Steam Turbine Test Rig

7. Centrifugal Blower Test Rig.

8. Revomax Boiler Model RXA-06.

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Course Code U15ME606R L T P C

Course Name Metrology & Measurements Laboratory 0 0 4 2

Course outcomes

Upon completion of this course the students will be able to…

CO -1

Calibrate the Vernier, Micrometer and Dial Gauge; checking the

dimensions of slip gauges and comparators; Measure the taper angle using sine bar / bevel protractor and Measurement of cutting tool

parameters.

CO -2 Measuring straightness and flatness, Checking Profiles using projector and

Floating carriage micrometer, Comparison of dimensional tolerances.

CO -3 Measurement of Force; Measuring of Gear Tooth Vernier. Demonstrate the

LVDT/Wheatstone Bridge and Torque sensor.

Total Hours 60

LIST OF EXPERIMENTS

1. Calibration of Vernier, Micrometer and Dial Gauge

2. Checking Linear Dimensions of a part using slip gauges

3. Measurement of Taper Angle using sine bar / bevel protractor

4. Measurement of cutting tool parameters using tool makers microscope

5. Measurement of straightness and flatness using auto-collimator

6. Measurement of thread parameters using Profile projector and Floating carriage

micrometer

7. Checking the limits of dimensional tolerances using comparators (Mechanical /

Pneumatic / Electrical)

8. Measurement of Temperature using Thermocouple / Pyrometer

9. Measurement of Force using load cell / proving ring

10. Measurement of Gear tooth dimensions using Gear Tooth Vernier

11. Study of Displacement using Strain Gauge / LVDT / Wheatstone Bridge

12. Study of torque using torque sensor

List of Equipment’s (for a batch of 30 students)

1. Micrometer and Dial Gauge

2. Vernier Caliper, Vernier Height Gauge, Vernier Depth Gauge

3. Sine Bar and Slip Gauge Set

4. Bevel Protractor

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5. Tool Makers Microscope

6. Autocollimator

7. Profile Projector

8. Floating Carriage Micrometer

9. Mechanical and Pneumatic Comparator

10. Temperature Measuring Setup

11. LVDT-Displacement Measuring Setup

12. Load cell -Force Measuring Setup

13. Torque Measuring Setup

14. Gear Teeth Vernier

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PROFESSIONAL ELECTIVES

LIST OF PROFESSIONAL ELECTIVES

Professional Electives for 6th Semester

S.No Course Code Course Title L T P C Group

Code

THEORY

1. U15ME904R Python :Programming and problem solving 3 0 0 3 PE

2. U15ME905R Automotive Electronics 3 0 0 3 PE

3. U15ME906R Internet of Things 3 0 0 3 PE

4. U15ME909R Design of jigs, fixtures and press tools 3 0 0 3 PE

5. U15ME914R Data Analytics 3 0 0 3 PE

6. U15ME915R Object oriented Programming using C++ 3 0 0 3 PE

7. U15ME916R Machine Learning 3 0 0 3 PE

8. U15ME917R Java Programming 3 0 0 3 PE

9. U15ME918R Python :Programming, Data structure and

problem solving 3 0 0 3 PE

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09.12.2019 Regulations-2015R Regulations-2014

Course Code U15ME904R L T P C

Course Name PYTHON: PROGRAMMING AND PROBLEM SOLVING 3 0 - 3

Pre-requisites subject: C - Programming

Course Outcomes

Upon completion of this course the students will be able to

CO1 Develop code for simple programs in Python.

CO2 Apply operators, expressions and loops in Python programs.

CO3 Create functions, strings and lists using Python.

CO4 Construct tuples, sets and dictionaries in Python.

CO5 Develop graphics programming with turtle.

Unit I INTRODUCTION L 9 T 0

History of Python – Installing Python – Problem solving strategies – Problem analysis –

Algorithms – Flow charts – Token – Core data type. Object oriented programming: Programming

languages – Paradigms – Features – Merits and demerits - Writing simple programs in Python.

Unit II OPERATORS, EXPRESSIONS AND LOOP CONTROL L 9 T 0

Arithmetic operators – Translating mathematical formulae into equivalent Python expressions –

Bitwise operator – Compound assignment operator. Loop control statements – while loop - for

loop – nested loops – break and continue statement.

Unit III FUNCTIONS, STRINGS AND FILE HANDLING L 9 T 0

Syntax and basics of a function – Parameter and arguments – Local and global variables –

Return statement – Recursive and lambda function. Strings – the str class – Traversing string –

Immutable strings – String operators and operations – Files: Types of file – Opening and closing

files – Reading and writing files – File positions.

Unit IV LISTS, TUPLES, SETS ANS DICTIONARIES L 9 T 0

Lists - Creating – Accessing – Slicing – Python inbuilt functions – List operator – Splitting a string

in list. Creating Tuples – Inbuilt functions for Tuples – Indexing and slicing – Operations on

Tuple. Creating Sets – Set in and not in operator – Python set class – Set operations –

Dictionaries: need – basics – creating – formatting – deleting – comparing.

Unit V GRAPHICAL INTERFACE L 9 T 0

Turtle module – moving the turtle in any direction – location – Colors – Drawing basic shapes

using iterations – Changing color dynamically using list – Creating bar chart.

GUI in python – root window – containers – canvas – frames and widgets – Creating tables.

Total Number of hours: 45

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Learning Resources

Text Books

1. Reema Thareja, “Python Programming using Problem Solving Approach”, Oxford

University Press, New Delhi, 2017.

2. Balagurusamy, E., “Introduction to Computing and Problem Solving Using Python”,

McGraw Hill Education (India) Private Limited, New Delhi, 2016.

Reference Books

1. Nageswara Rao, R., “Core Python Programming”, dreamtech press, second edition,

2018.

2. Ashok Namdev Kamthane & Amit Ashok Kamthane, “Programming and Problem

Solving with Python”, McGraw Hill Education (India) Private Limited, Chennai,

2018.

3. Wesley J. Chun, “Core Python Programming”, Pearson, 2nd Edition, 2006.

4. Allen B.Downey, “Think Python: How to Think Like a Computer Scientist”, O'Reilly

Media, 2nd Edition, 2015.

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09.12.2019 Regulations-2015R Regulations-2014

Course Code U15ME905R L T P C

Course Name AUTOMOTIVE ELECTRONICS 3 0 - 3

Pre-requisite subjects: Automobile Engineering and basic electrical and electronic engineering.

Course Outcomes

Upon completion of this course the students will be able to

CO1 Compare the various types of sensors and microprocessor .

CO2 Distinguish the throttle body injection and multi point fuel injection system systems and

electronic injection systems.

CO3 Analyze the various Electronic management systems used in auto motives.

CO4 Explain the hydraulic actuation system, Vehicles lighting Circuits and electric windows

systems.

CO5 Discuss the various controlled systems used in auto motives.

Unit-1 Fundamentals of Automotive Electronics

Basic sensor arrangement – Types of sensors. Oxygen Sensor – Cranking Sensor – Position Sensors –

Engine cooling water temperature Sensor – Engine oil pressure Sensor – Fuel metering – Vehicle speed

sensor and detonation sensor – Stepper motors – Relays, solenoids - Microprocessor and Micro Computer

applications in automobiles.

Unit-2 Engine management systems

Introduction - components for engine management system - Open loop and closed loop control system –

Engine cranking and warm up control – Acceleration, deceleration and idle speed control-Integrated

engine system – Feedback carburetor system – Throttle body injection and multi point fuel injection

system– Advantage of electronic ignition systems – Types of solid state ignition systems and their

principles of operation – Electronic spark timing control.

Unit-3 Electronic management systems

Introduction-Electronic management of chassis systems, Vehicle motion control, anti - lock braking

system, Tyre pressure monitoring system, Collision avoidance system, Traction control system, Active

suspension system ,Key less entry system and Electronic power steering system.

Unit-4 Electronics Actuators

Wiper system, flasher, electric fuel pump, hydraulic actuation system, Brake Actuation Warning System.

Traficators, Flash System, Windshield Wiper, Starting Systems – Charging Systems –climate control and

electronic displays, Vehicles lighting Circuits Signaling Circuit, electric windows systems, seat belt

tensioners.

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Unit-5 Electronics Control systems

Introduction of Control Systems - Automatic Cabin climate control, Automatic Cruise Control , Air Bag

Control, ABS Control, Automatic Transmission Control, Electronic steering Control, Automatic gear control,

Electric Power Steering, Electronic Distributor-less ignition control, Electronic Fuel Control Exhaust

emission control , Electronic Clutch Control, Automotive central locking and anti-theft system control.

Text Books

1. William B. Riddens, “Understanding Automotive Electronics”, 5th Edition,

Butterworth Hennimann Woburn, 1998.

2. Jiri Marek, Hans Peter trah, 'Sensers Applications, Sensers for Automotive

Technology', 1st Edition (Wiley -VCH)

3. U.Kiencke, and L. Nielson, “Automotive Control Systems”, Springer Verlag Berlin,

2000 Judge.A.W, „Modern Electric Equipments for Automobiles‟, Chapman and

Hall, London.

4. Bechfold, Understanding Automotive electronics, SAE, 1998.

Reference Books

1. Robert Bosch, “Automotive Handbook” SAE, 2003.

2. Sonde.B.S. “Transducers and Display System”, Tata McGraw Hill Publishing Co.

Ltd.New Delhi

3. W.F. Walter, Electronic Measurements‟, Macmillan Press Ltd., London.

4. E.Dushin, Basic Metrology and Electrical Measurements‟, MIR Publishers, Moscow,

1989.

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Course Code: U15ME906R L T P C

Course Name: Internet of Things 3 - - 3

Course Outcomes

Upon completion of this course the students will be able to

CO1 Discuss the concept of IOT and explain the various techniques of IOT .

CO2

Analyze the basic difference between M2M and IoT and knowledge of IoT

components.

CO3 Categorize the various Challenges in Inter net of things.

CO4 Design various domain specific IOT applications.

CO5 Discuss various events occurred and give the suggestion for future

applications.

UNIT-I Introduction to IoT L 9 T 0

Defining IoT, Characteristics of IoT, Physical design of IoT, Logical design of IoT, IoT Communication

models, IoT communication APIs, Enabling Technologies, IoT levels & Deployment templates.

UNIT-II M2M & Components of IoT L 9 T 0

Machine to Machine, Difference between IoT and M2M, Sensors, Actuators, Communication modules -

RFID, Bluetooth, WiFi, ZigBee, and Power sources.

UNIT-III Challenges in IoT L 9 T 0

Design challenges, Development challenges, Security challenges, and other challenges.

UNIT- IV Domain specific IoT’s L 9 T 0

Home automation, Cities, Environment, Industry, Developing simple IoT application through embedded

platforms – Arduino, Raspberry Pi.

UNIT-V: IoT Case Studies L 9 T 0

Introduction, Design layers, Design complexity, IoT/IIoT application in the premises, Supply-Chain,

Customer monitoring, Connected Car & its application and services, Case study- Smart city street lights

control ad monitoring.

Total: 45 Hrs

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Learning Resources

TEXTBOOKS

1. David Hanes, Gonzalo Salgueiro, Patrick Grossetete, Rob Barton and Jerome Henry, ―IoT

Fundamentals: Networking Technologies, Protocols and Use Cases for Internet of Things, Cisco

Press, 2017

REFERENCES BOOKS

1. Arshdeep Bahga, Vijay Madisetti, ―Internet of Things – A hands-on approach, Universities Press,

2015

2. Olivier Hersent, David Boswarthick, Omar Elloumi , ―The Internet of Things – Key applications

and Protocols, Wiley, 2012 (for Unit 2).

3. Jan Ho¨ ller, Vlasios Tsiatsis , Catherine Mulligan, Stamatis , Karnouskos, Stefan Avesand. David

Boyle, “From Machine-to-Machine to the Internet of Things – Introduction to a New Age of

Intelligence”, Elsevier, 2014.

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09.12.2019 Regulations-2015R Regulations-2014

Course Code U15ME909R L T P C

Course Name DESIGN OF JIGS, FIXTURES AND PRESS TOOLS 3 - - 3

Pre-requisites subjects: Manufacturing Technology-I & II, Design of Machine Elements.

Course Outcomes

Upon completion of this course the students will be able to

CO 1 Explain the fundamental concepts and various elements in Tool design and discuss the features of

Jigs and fixture mechanisms, pneumatic and hydraulic actuators.

CO 2 Discuss the working principles of Jigs and its types. Outline the working principle and characteristic

of various parts with its real time applications.

CO 3 Design the fixture for the machines such as lathe, milling machine, Planner, boring and broaching.

Also design the fixtures for grinding, shaping, welding and planning operations for a given component.

CO 4 Design the press tools, Dies and its accessories.

CO 5 Develop the progressive dies, compound dies and bending dies for blanking operations.

Unit I PURPOSE TYPES AND FUNCTIONS OF JIGS AND FIXTURES L 9 T 0

Tool design objectives - Production devices - Inspection devices - Materials used in Jigs

and Fixtures – Types of Jigs - Types of Fixtures-Mechanical actuation-pneumatic and

hydraulic actuation-Analysis of clamping force- Tolerance and error analysis.

Unit II JIGS L 9 T 0

Drill bushes –different types of jigs-plate latch, channel, box, post, angle plate, angular

post, turnover, pot jigs- Automatic drill jigs-Rack and pinion operated - Air operated Jigs

components - Design and development of Jigs for given components.

Unit III FIXTURES L 9 T 0

General principles of boring, lathe, milling and broaching fixtures- Grinding, planning and

shaping fixtures, assembly, Inspection and welding fixtures- Modular fixtures. Design and

development of fixtures for given component.

Unit IV PRESS WORKING L 9 T 0

Press Working Terminologies and Elements of Dies and Strip Layout Press working

terminology-Presses and press accessories-Computation of capacities and tonnage

requirements - Elements of progressive combination and compound dies: Die block-die

shoe - Bolster plate-punch holder-guide pins and bushes – strippers – knockouts-stops –

pilots.

Unit V DESIGN AND DEVELOPMENT OF DIES L 9 T 0

Design and development of progressive and compound dies for Blanking and piercing

operations. Bending dies – development of bending dies-forming and drawing dies-

Development of drawing dies. Design considerations in forging, extrusion, casting and

plastic dies.

Total Number of hours: 45

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Learning Resources

Text Books:

1. Edward G Hoffman, “Jigs & Fixture Design” 5th Edition, 2008, Thomson – Delmar

Learning, Singapore, ISBN: 9788131505533.

2. Joshi, P.H. “Jigs and Fixtures”, 3rd Edition, 2010, Tata McGraw Hill Publishing Co.,

Ltd., New Delhi, ISBN: 9780070680739.

3. Donaldson, Lecain and Goold “Tool Design”, 4th Edition Tata McGraw Hill, 2012.

Reference Books

1. K. Venkataraman, “Design of Jigs Fixtures & Press Tools”, Tata McGraw Hill, New

Delhi, reprint 2015. ISBN : 978-11-1915-567-6

2. Hiram E Grant, “Jigs and Fixture” Tata McGraw-Hill, New Delhi, 2003.

3. ASTME Fundamentals of Tool Design, Prentice Hall of India.

4. Design Data Handbook PSG College of Technology, Coimbatore.

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09.12.2019 Regulations-2015R Regulations-2014

Course Code: U15ME914R

Course Name: DATA ANALYTICS L T P C 3 0 0 3

Course Outcomes

Upon completion of this course the students will be familiar with

CO 1: Construct the basic data search and set from real world scenarios.

CO 2: Develop the analytics reports of various data sets.

CO 3: Design the techniques for data mining

CO 4: Examine the various data analytics tools in python language.

CO 5: Develop the ANOVA and other data analytics tools of Python language.

UNIT I INTRODUCTION TO DATA ANALYTICS 9

Introduction to data- data vs noise- Data normalization- Data Summarization and Visualization –

Challenges of conventional systems - Web data – Evolution of Analytic scalability – Data sorting-

Synchronous Data values- Data traffic regulation through web.- Data storage

UNIT II CONVENTIONAL DATA ANALYTICS TOOLS 9

Analytic processes and tools, Analysis vs reporting - Modern data analytic tools, Statistical concepts:

Sampling distributions, resampling, statistical inference, and prediction error.

Regression modelling, Multivariate analysis, Bayesian modelling, inference and Bayesian networks,

Support vector and kernel methods.

UNIT III MINING AND DATA STREAMS 9

Analysis of time series: linear systems analysis, nonlinear dynamics - Neural networks: learning and

generalization, competitive learning, principal component analysis and neural networks.

Introduction to Streams Concepts – Stream data model and architecture - Stream Computing, Sampling

data in a stream– Filtering streams – Counting distinct elements in a stream – Estimating moments –

Counting oneness in a window –Decaying window - Real-time Analytics Platform (RTAP) applications -

case studies.

UNIT IV DATA ANALYTICS USING PYTHON 9

Understanding the Data- Python Packages for Data Science- Importing and Exporting Data in Python-

Importing Datasets for Python- Data Wrangling-Pre-processing Data in Python- Dealing with Missing

Values in Python -Data Formatting in Python- Data Normalization in Python.- Binning in Python. -Turning

categorical variables into quantitative variables in Python.

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UNIT V EXPLORATORY DATA ANALYTICS USING PYTHON 9

Exploratory Data Analysis -Descriptive Statistics- GroupBy in Python- Data correlation in python-

Correlation Statistics -Analysis of Variance (ANOVA). Linear Regression and Multiple Linear Regression-

Model Evaluation using Visualization- Polynomial Regression and Pipelines - Measures for In-Sample

Evaluation -Model Development and applications.

TEXT BOOKS: TOTAL:45 HRS

1. Michael Berthold, David J. Hand, Intelligent Data Analysis, Springer, 2007.

2. Anand Rajaraman and Jeffrey David Ullman, Mining of Massive Datasets, Cambridge University Press,

2012.

REFERENCES:

1. Bill Franks, Taming the Big Data Tidal Wave: Finding Opportunities in Huge Data Streams with

advanced analystics, John Wiley & sons, 2012.

2. Glenn J. Myatt, Making Sense of Data, John Wiley & Sons, 2007 Pete Warden, Big Data Glossary,

O’Reilly, 2011.

3. Jiawei Han, Micheline Kamber “Data Mining Concepts and Techniques”, Second Edition, Elsevier,

Reprinted 2008.

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Course Code: U15ME915R

Course Name: OBJECT ORIENTED PROGRAMMING USING C++ L T P C 3 0 0 3

COURSE OUTCOMES

At the end of the course, students will be able to

CO 1 Demonstrate the use of various OOPs concepts in connection with C++.

CO 2 Describe arrays, function arguments and utilization of constructors and destructors.

CO 3 Write C++ program to solve real world problem with code reusability through inheritance.

CO 4 Write C++ programs for various applications with file handling.

CO 5 Illustrate the various templates and applications of exceptional handling.

UNIT-I INTRODUCTION TO OOP’S 9

Overview of C - Basic concepts and benefits of OOP - Structure of C++ program – Tokens-Keywords –

Identifiers – constants - Data types - Basic, User defined, Derived - Reference variables - Scope resolution

operator - Type casting - Function Prototyping - call by reference, return by reference - Inline function -

Default arguments – Function overloading.

UNIT-II CLASSES AND OBJECTS 9

Class specification - Access qualifiers - Static data members and member functions - Array of objects -

Objects as function arguments - Friend functions - Returning objects - Local classes -Constructors –

Parameterized constructors - Overloaded Constructors - Constructors with default arguments - Copy

constructors - Dynamic constructors - Destructors - Operator Overloading: Operator function –

Overloading unary and binary operator - Overloading the operator using friend function.

UNIT-III INHERITANCE & POINTERS 9

Derived classes - Single Inheritance - Multiple Inheritance - Multi level inheritance - Hierarchical

Inheritance - Hybrid Inheritance - Constructors in derived classes.

Pointers - Pointers to objects – this pointer - Virtual functions - Pure virtual function.

UNIT-IV MANAGING CONSOLES AND WORKING WITH FILES 9

Stream classes - Formatted I/O - I/O Manipulators - User defined manipulators.

File handling - File pointer and manipulation - Sequential and random access - Error handling.

UNIT-V TEMPLATES AND EXCEPTION HANDLING 9

Function templates, overloaded function templates, user defined template arguments, class templates.

Exception Handling: Exception handling mechanism, multiple catch, nested try, re-throwing the exception.

Total : 45 Hours

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TEXT BOOK:

1. E. Balagurusamy, “Object Oriented Programming with C++”, Tata McGraw Hill,

Sixth Edition, 2013.

RREFERENCES

1. K.S. Easwarakumar, “ Object Oriented Data Structures Using C++”, Vikas

Publication House Pvt Ltd, First Edition, 2000

2. Hubbard John , “Programming with C++” , Tata McGraw Hill, 2000.

3. Robert Lafore, “Object Oriented Programming in Turbo C++”, Galgotia

Publications, 2006.

4. K. R.Venugopal, Rajkumar, T.Ravishankar, “Mastering C++”, Tata McGraw Hill,

2007.

5. Bjarne Stroustrup, “The C++ Programming Language”, Pearson Education, Fourth

Edition, 2013.

6. B.Trivedi, “Programming with ANSI C++”, Oxford University Press, 2007.

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Course Code: U15ME916R

Course Name MACHINE LEARNING L T P C 3 0 0 3

Course Outcomes

Upon completion of this course the students will be able to

1. Summarize the basic concepts and techniques of Machine Learning.

2. Apply probability and regression algorithms for developing machine learning

algorithms.

3. Characterize machine learning algorithms as supervised, semi-supervised, and

unsupervised

4. Assess the complexity of Machine Learning algorithms and their limitations.

5. Evaluate and interpret the results of the algorithms for various applications.

UNIT I – INTRODUCTION 9

History of Artificial Intelligence – overview of machine learning – Linear algebra – scalars, vectors and

tensors – Matrix operations – special matrices – Matrix decomposition – labeled data – un-labeled data –

supervised learning – unsupervised learning – semi-supervised learning – reinforced learning – data

science – Artificial Intelligence and deep learning in Engineering applications.

UNIT II – PROBABILITY AND REGRESSION 9

Introduction to probability theory – discrete, continuous and random variables – Bayes’ theorem (Simple

examples) – expectation, variance and covariance – relationship between expectation and covariance –

Linear regression – least squares gradient descent – goodness of fit – bias variance tradeoff – multinomial

regression – polynomial regression – ridge regression - lasso regression. (Qualitative treatment only)

UNIT III – SUPERVISED AND UN-SUPERVISED LEARNING 9

Clustering – Hierarchical – divisive, agglomerative, dendrograms, K-means – identification of centroids

and location near centroids – clustering large applications (CLARA) – dimension reduction – k-nearest

neighbor algorithm (kNN) – Density based spatial clustering of applications with noise (DBSCAN).

(Qualitative treatment only)

UNIT IV – MACHINE LEARNING ALGORITHMS 9

Random forest algorithm (RFA) – Decision tree – binary decision tress, pruning – Bayesian network,

applications – Support vector Machine algorithm (SVR) – deep learning concepts – Artificial Neural

networks (ANN) – training data, hidden layers, and predicted output – Introduction to perceptron.

UNIT V – APPLICATIONS OF MACHINE LEARNING 9

Text categorization (spam filtering) – predictive text messaging – fraud detection in banking – optical

character recognition – machine vision (object detection and colour identification) – market segmentation

and prediction – locating the position of end-effector in robotic grasping – predicting the price of a used

car – dynamic pricing applications – Autonomous automotive vehicle development – Applications in design

and manufacturing domain.

Total: 45 Hours

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References:

1. Harrington, Peter. Machine learning in action. Manning Publications Co., 2012.

2. Alpaydin, Ethem. Introduction to machine learning. MIT press, 2009.

3. Bengio, Yoshua, Ian Goodfellow, and Aaron Courville. Deep learning. Vol. 1.

MIT press, 2017.

4. Witten, Ian H., et al. Data Mining: Practical machine learning tools and

techniques. Morgan Kaufmann, 2016.

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Pre-requisites subjects: Basics of C and C++

Course Outcomes

Upon completion of this course the student will be able to

CO1 Apply basic features of Java to write programs.

CO2 Apply modifiers, objects, class in JAVA and inheritance to write an efficient programs.

CO3 Develop a method overloading and Overriding in Java for writing programs.

CO4 Write rules for creating java constructor and Building applet code

CO5 Apply Hierarchy of Java Exception classes and creating a thread in Java

Unit I INTRODUCTION OF JAVA L 9 T 0

Introduction of Java - What happens at compile time? - Difference between JDK, JRE and

JVM - Understanding first java program - Basic Syntax – Prerequisite - History of Java -

Comparison of C++ & JAVA - Java Data Types - Java Notations - Java Variables -

Conditional Statement - Switch Statement.

Unit II JAVA ACCESS MODIFIERS, OBJECTS, CLASS IN JAVA AND

INHERITANCE

L 9 T 0

Access modifiers - Default Access Modifiers - Private Access Modifier - Protected Access

Modifiers - Public Access Modifiers – Object – Class - New keyword in Java – Inheritance

- Extends Keyword - Super Keyword - Usage of Super Keyword - Types of Inheritance.

Unit III POLYMORPHISM, ENCAPSULATION AND ABSTRACTION L 9 T 0

Polymorphism - Method Overloading - Different ways to overload the method - Method

Overriding in Java – Annotations - Runtime polymorphism – Encapsulation – Abstraction

– Interface - Difference between abstract classes & interfaces.

Course Code U15ME917R L T P C

Course Name JAVA PROGRAMMING 3 - - 3

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Unit IV CONSTRUCTOR, PACKAGE AND APPLET L 9 T 0

Rules for creating java constructor - Types of java constructors - Introduction of Package

- How to access package from another package? – Applet - Advantage of Applet -

Lifecycle of Java Applet - How to run an Applet? - Building Applet Code - Running the

Applet - Features of Applets over HTML - AWT listeners.

Unit V EXCEPTION, MULTI THREADING, I/O STREAM AND

ARRAYLIST

L 9 T 0

Exception Handling - difference between Error and Exception - Hierarchy of Java

Exception classes - Common scenarios where exceptions may occur - Java Exception

Handling Keywords - differences between “throw” and “throws” keywords – Thread -

Creating a Thread in Java – Multithreading - Java Scanner class - Conversion Methods -

Methods in Java Array List – Introduction to Various Methods in vectors.

Total Number of hours: 45

Learning Resources

TEXT BOOK:

1. E.Balagursamy,” Programming with JAVA”, 5th edition, Mcgraw Hill companies, 2017

2. Herbert Schildt, “JavaTM : The Complete Reference”, 9th edition, Oracle Press, 2018.

3. Anita Seth, B. L. Juneja, “JAVA: One Step Ahead”, Oxford University Press, 2017.

REFERENCES:

1. Cay S. Horstmann and Gary Cornell, “Core Java: Volume I – Fundamentals”, 9th edition, Prentice Hall, 2016.

2. K. Arnold, D. Holmes and J. Gosling, “The JAVA programming language”, 4th edition, Addison Wesley

Professional, 2015.

3. Timothy Budd, “Understanding Object-oriented programming with Java”, 3rd edition, Addison Wesley,

2018.

4. C. Thomas Wu, “An introduction to Object-oriented programming with Java”, 5th edition, Tata McGraw-Hill

Publishing company Ltd., 2018.

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Course Code U15ME918R L T P C

Course Name PYTHON: PROGRAMMING, DATA STRUCTURE AND PROBLEM

SOLVING 3 0 - 3

Pre-requisites subject: -

Course Outcomes

Upon completion of this course the students will be able to

CO1 Develop code for simple programs in Python.

CO2 Apply loops, functions and strings in Python programs.

CO3 Create lists, tuples, sets and files using Python.

CO4 Construct dictionaries in Python.

CO5 Develop graphics programming with turtle and GUI.

Unit I INTRODUCTION, OPERATORS AND EXPRESSIONS L 9 T 0

Programming languages - History of Python – Installing Python – Problem solving strategies –

Problem analysis – Algorithms – Flow charts – Token – Core data type – Arithmetic operators –

Translating mathematical formulae into equivalent Python expressions – Bitwise operator –

Compound assignment operator - Writing simple programs in Python.

Unit II LOOP CONTROL, FUNCTIONS AND STRINGS L 9 T 0

Loop control statements – while loop - for loop – nested loops – break and continue statement.

Syntax and basics of a function – Parameter and arguments – Local and global variables –

Return statement – Recursive and lambda function. Strings – the str class – Traversing string –

Immutable strings – String operators and operations.

Unit III LISTS, TUPLES, SETS AND FILE HANDLING L 9 T 0

Lists - Creating – Accessing – Slicing – Python inbuilt functions – List operator – Splitting a string

in list. Creating Tuples – Inbuilt functions for Tuples – Indexing and slicing – Operations on

Tuple. Creating Sets – Set in and not in operator – Python set class – Set operations. Files:

Types of file – Opening and closing files – Reading and writing files – File positions.

Unit IV DICTIONARIES AND DATA STRUCTURES L 9 T 0

Dictionaries: need – basics – creating – formatting – deleting – comparing. Data structures –

Linked lists – Stacks – Queues – Deques – Heaps.

Unit V GRAPHICAL INTERFACE L 9 T 0

Turtle module – moving the turtle in any direction – location – Colors – Drawing basic shapes

using iterations – Changing color dynamically using list – Creating bar chart.

GUI in python – root window – containers – canvas – frames and widgets – Creating tables.

Total Number of hours: 45

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Learning Resources

Text Books

3. Nageswara Rao, “Core Python Programming”, Dreamtech Press, New Delhi, 2nd Edition, 2018.

4. Balagurusamy, E., “Introduction to Computing and Problem Solving Using Python”, McGraw Hill

Education (India) Private Limited, New Delhi, 2016.

Reference Books

5. Reema Thareja, “Python Programming using Problem Solving Approach”, Oxford University Press,

New Delhi, 2017.

6. Wesley J. Chun, “Core Python Programming”, Pearson, 2nd Edition, 2006.

7. Allen B.Downey, “Think Python: How to Think Like a Computer Scientist”, O'Reilly Media, 2nd

Edition, 2015.

8. Ashok Namdev Kamthane & Amit Ashok Kamthane, “Programming and Problem Solving with

Python”, McGraw Hill Education (India) Private Limited, Chennai, 2018.

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Sona College of Technology, Salem

(An Autonomous Institution)

Courses of Study for B.E/B.Tech. Semester VI under Regulations 2015R (CBCS)

Branch: Electrical and Electronics Engineering

S. No Course Code Course Title Lecture Tutorial Practical Credit

Theory

1 U15EE601R Power System Protection and Switchgear 3 0 0 3

2 U15EE602R Power System Analysis 2 2 0 3

3 U15EE603R Solid State Drives 3 0 0 3

4 U15EE604R Comprehension 2 0 0 2

5 U15EE923R Elective – Internet of Things

3 0 0 3 U15EE924R Elective – Automotive Electrical Technology

6

U15CE1002R Open Elective – Disaster Management

3 0 0 3

U15CE1003R Open Elective – Energy Efficiency and Green Building

U15CE1004R Open Elective – Municipal Solid Waste Management

U15CS1002R Open Elective – Cloud Computing

U15CS1004R Open Elective – Mobile Application Development

U15IT1003R Open Elective – Problem Solving Techniques using Java

Programming

U15ME1004R Open Elective – Industrial Safety

Practical

7 U15EE605R Solid State Drives Laboratory 0 0 4 2

8 U15EE606R Electrical System Design Laboratory 0 0 4 2

9 U15ENG601R Communication Skills Laboratory 0 0 2 1

10 U15GE601BR Soft Skills and Aptitude - IV 0 0 2 1

Total Credits 23

Approved By

Chairperson, Electrical and Electronics Engineering BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal

Dr.S.Padma Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to:-

HOD/Electrical and Electronics Engineering, Sixth Semester BE EEE Students and Staff, COE

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09.12.2019 Regulations-2015R Regulations-2014

U15EE601R POWER SYSTEM PROTECTION AND SWITCHGEAR 3 0 0 3

COURSE OUTCOMES:

At the end of this course the students will be able to,

Discuss the need for the protection and various digital protection schemes and analyse relay characteristics.

Discuss protection schemes of generator, transformer, bus bars and transmission lines.

Describe the method of circuit breaking, arcing phenomena – various arc theories – capacitive and inductive breaking.

Discuss the modern trends in protectionand working of different types of circuit breakers.

Describe the methods of protection against over voltages and insulation co-ordination in power system.

UNIT I RELAYS 9

Need for protection – essential qualities of protective relays – over current relays directional, distance and

differential, under frequency, negative sequence relays – static relays – microprocessor – based relays. – Digital

filtering in protective relays – relays algorithms –Impedance relay, MHO relay – quadrilateral relay.

UNIT II APPARATUS PROTECTION 9

Apparatus protection – generator and transformer protection – protection of bus bars, transmission lines, CTs &

PTs and their application in protective schemes.

UNIT III THEORY OF ARC QUENCHING 9

Physics of arc phenomena and arc interruption – re-striking voltage &recovery voltage, rate of rise of recovery

voltage, current chopping, interruption of capacitive current, resistance switching – DC circuit breaking.

UNIT IV MODERN TRENDS IN PROTECTION AND CIRCUIT BREAKER 9

Carrier current pilot relaying – phase comparison, carrier aided distance protection – travelling wave relays –

amplitude comparison relay, phase comparison relay – fibre optic based relaying. switchgear – fault clearing

and interruption of current –types of circuit breakers: vacuum circuit breakers, SF6 circuit breakers, oil circuit

breakers and air circuit breakers – selection of circuit breakers – intelligent circuit breakers.

UNIT V PROTECTION AGAINST OVER VOLTAGES 9

Causes of over voltages – methods of protection against over voltages – ground wires, Peterson coil, surge

absorbers, surge diverters – relay co-ordination – selection of Protective system – Insulation co-ordination.

Lecture: 45; Tutorial: 0; TOTAL: 45 Hours

TEXT BOOKS:

1. Ravindranath.B and Chander.N,“Power System Protection and Switchgear”, New Age international

Publishers, 2011.

2. BadriRam andB.H.Vishwakarma,“Power System Protection and Switchgear”, Tata McGraw Hill Education

Pvt. Ltd, 2013.

REFERENCES:

1. Chakrabarti.A, Soni.M.L, Bhatnagar.U.S.,Gupta.P.V, “A text book on PowerSystem Engineering”,

Dhanpatrai&Co. pvt.ltd., 2013.

2. C.L. Wadhwa, “Electrical Power Systems”, New Age International (P) Ltd., 2016.

3. RavindraP.Singh , “ Digital Power System Protection” , PHI , New Delhi, 2007.

4. Sunil S. Rao, “Switchgear and Protection”, Khanna Publishers, 13th

Edition, 2015.

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U15EE602R POWER SYSTEM ANALYSIS 2 2 0 3

COURSE OUTCOMES: At the end of this course the students will be able to,

Model the various power system components and to draw the reactance diagram for practical power system networks.

Solve the power flow equation for power system networks using iterative solution techniques.

Carry out symmetrical fault analysis for power system networks using bus impedance matrix formulation.

Carry out unsymmetrical fault analysis for various power system networks using symmetrical components.

Model the power system for stability analysis and to solve the swing equation using modified Euler’s and Runge-Kutta methods.

UNIT I POWER SYSTEM – AN OVERVIEW AND MODELLING 9

Need for system analysis in planning and operation of power system – modelling of synchronous generator and

motor, transformer and transmission line – per unit system– change of base – impedance and reactance

diagrams.

UNIT II POWER FLOW ANALYSIS 15

Primitive network and network matrices – Y-bus formulation by direct inspection and singular transformation

methods – problem definition –bus classification – derivation of power flow equation – power flow solution by

Gauss Seidel – computation of slack bus power, transmission loss and line flow – Newton Raphson and fast

decoupled methods (qualitative treatment only)comparison of solution techniques.

UNIT III SYMMETRICAL FAULT ANALYSIS 12

Need for short circuit study – approximations in modelling – fault MVA – symmetrical short circuit analysis –

Thevenin’s equivalent representation –bus impedance matrix formulation – bus building algorithm –

symmetrical fault calculations using bus impedance matrix.

UNIT IV UNSYMMETRICAL FAULT ANALYSIS 12

Unsymmetrical fault analysis – symmetrical component transformation – sequence impedances – sequence

networks – types of unsymmetrical fault – unsymmetrical fault analysis on an unloaded generator –

unsymmetrical fault analysis on power system.

UNIT V STABILITY ANALYSIS 12

Concept of stability in power system – steady and transient state stability – rotor angle stability–voltage stability

– swing equation – power angle equation and curve – equal area criterion – critical clearing angle and time –

solution of swing equation by modified Euler’s method and Runge-Kutta method (qualitative treatment only).

Lecture: 30, Tutorial: 30, TOTAL: 60 Hours

TEXT BOOKS:

1. Nagrath.I.J, Kothari.D.P, “Modern Power System Analysis”, Tata McGraw Hill,3rd

Ed., 2003.

2. HadiSaadat, “Power System Analysis”, Tata McGraw Hill Pub Co. Ltd., New Delhi, 2002.

REFERENCES:

1. Gupta, J.B., “A Course in Electrical Power”, S.K.Kataria and Sons, 2009.

2. Abhijit Chakrabarti, Sunita Halder, “Power System Analysis: Operation and Control”, 2nd

Edition, Prentice

Hall of India Learning Private Limited, 2008.

3. Stagg.G.W, and El-Abaid.A.H.,“Computer Methods in Power System Analysis”, Tata McGraw Hill Pub Co.

Ltd, New Delhi, 1993.

4. John J. Grainger & William Stevenson JR., “Power system Analysis by Tata McGraw-Hill New Delhi, 1st

Ed., 2003

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09.12.2019 Regulations-2015R Regulations-2014

U15EE603R SOLID STATE DRIVES 3 0 0 3

COURSE OUTCOMES:

At the end of this course the students will be able to,

Describe the steady state operation and transient dynamics of a motor load system.

Analyse the operation of the converter and chopper fed DC drives.

Discuss the operation of solid state speed control of induction motor.

Discuss the performance of solid state speed control of synchronous motor.

Describe the stepper motor, solar pump drive and battery powered electric vehicle.

UNIT I REVIEW OF ELECTRIC DRIVES 9

Electric drives – advantage of electric drives – selection of motor power rating – thermal model of motor for

heating and cooling – classes of duty cycle – determination of motor rating four quadrant operations – starting,

braking and reversing operations.

UNIT II SOLID STATE CONTROL OF DC DRIVES 9

Single-phase and three-phase converter fed drives – continuous and discontinuous conduction modes – chopper

fed drives – four-quadrant operation – closed loop drive system.

UNIT III SOLID STATE CONTROL OF INDUCTION MOTOR 9

Induction motor drives – stator control – stator voltage and frequency control – AC chopper, inverter and cyclo-

converter fed induction motor drives – rotor control – rotor resistance control and slip power recovery scheme.

UNIT IV SOLID STATE CONTROL OF SYNCHRONOUS MOTOR 9

Variable speed drives – variable frequency control – self-controlled synchronous motor – inverter fed

synchronous motors – cyclo-converter fed synchronous motor – brushless DC motor drives.

UNIT V STEPPER MOTOR, SOLAR AND ELECTRIC VECHICLE DRIVES 9

Stepper motor – variable reluctance – permanent magnet – features of stepper motors – torque vs stepping rate

characteristics – driver circuits – solar panels – motor suitable for pump drives – solar powered pump drives –

drive for hybrid electric vehicles.

Lecture: 45, Tutorial: 0, TOTAL: 45 Hours

TEXT BOOKS:

1. GopalKDubey, “FundamentalsofElectric Drive”,Narosa Publications, II Edition, 2002.

2. BimalK.Bose, “Modern Power Electronics and AC Drives”, Prentice Hall of India, 2005.

REFERENCES:

1. Pillai.S.K., “A first course on Electrical Drives”, New Age International (P) Ltd., 1984.

2. VedamSubramanyan, “Thyristor control of Electrical Drives”, Tata McGraw Hill, 1996.

3. Sen P.C., “Thyristor Drives”, John Wiley & sons, New York, 1993.

4. R. Krishnan, ‘Electric Motor & Drives Modeling, Analysis and Control’, Prentice Hall of India, 2001.

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09.12.2019 Regulations-2015R Regulations-2014

U15EE604R COMPREHENSION 2 0 0 2

Review of Electric Circuits, Electromagnetic Fields, Signals and Systems, Electrical Machines, Control

Systems, Electrical and Electronic Measurements, Analog and Digital Electronics and Power Electronics.

TOTAL: 30 Hours

Page 55: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15EE605R SOLID STATE DRIVES LABORATORY 0 0 4 2

COURSE OUTCOMES:

At the end of this course the students will be able to,

Simulate AC and DC drives using power electronics modules and the performance characteristics of AC,

DC and special drives.

Analyse the speed control using microcontroller, DSP and PLC based control of VFD

Analyse the performance parameters of electrical drives.

LIST OF EXPERIMENTS:

1. Simulation of closed loop control of converter fed DC motor.

2. Simulation of closed loop control of chopper fed DC motor.

3. Simulation of VSI fed 3 phase induction motor.

4. Simulation of 3-phase synchronous motor drive.

5. Speed control of stepper motor using microcontroller.

6. Design of DSP based closed drive for induction motor.

7. Analysis of converter fed DC drive.

8. Speed control of induction motor using PLC

9. Analysis of DSP based chopper fed DC drives.

10. Speed control of Brushless DC motor.

11. Speed control of 3 phase induction motor using PWM inverter.

12. Speed control of PMSM motor drive using FPGA

13. Speed control of switched reluctance motor drive using DSP.

Total: 60 Hours

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09.12.2019 Regulations-2015R Regulations-2014

U15EE606R ELECTRICAL SYSTEM DESIGN LABORATORY 0 0 4 2

COURSE OUTCOMES:

At the end of this course the students will be able to,

Create revit model and single line diagram for an electrical layout

Design and implement electrical components for a building

Panel scheduling for electrical system of a building

LIST OF EXPERIMENTS:

1. Create Revit models by linking and setting up the architecture and structural file.

2. Create copy/monitor levels for an electrical layout.

3. Create visibility graphics settings for designing an electrical design layout.

4. Create spaces for an electrical system model in Revit architecture.

5. Design single line diagram for a living room.

6. Design lighting circuits for a building.

7. Design power circuits for a building.

8. Design fire protection and alarm system for a building.

9. Design distribution system for an electrical load.

10. Calculate panel schedules for an electrical system layout.

11. Implement addition and modification of tags for a given layout.

12. Verify coordination of electrical system design with HVAC/Plumbing.

Total: 60 Hours

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09.12.2019 Regulations-2015R Regulations-2014

U15EE923R INTERNET OF THINGS 3 0 0 3

COURSE OUTCOMES

At the end of the course, the students will be able to:

Describe the characteristics, physical and logical designs, domains and architecture of IoT

Differentiate M2M and IoT

Write a program using Python programming language

Identify the various IoT elements specific to the applications

Design a portable IoT using Arduino/Raspberry Pi incorporating cloud and analytics.

UNIT I FUNDAMENTALS OF IoT 12

Introduction - Definition and Characteristics of IoT - Physical design - IoT Protocols - Logical design – IoT

communication models, IoT Communication APIs - Enabling technologies - Wireless Sensor Networks, Cloud

Computing, Big data analytics, Communication protocols, Embedded Systems, IoT Levels and Templates -

Domain specific IoTs - IoT Architectural view

UNIT II M2M AND IoT SYSTEMS- LOGICAL DESIGN USING PYTHON 9 IoT and M2M- difference between IoT and M2M - Software Defined Networks - Network Function

Virtualization – Python –Introduction – Python Data types & Data Structures – Control flow – Functions –

Modules – Packages – File Handling – Date/Time operations – Classes –Simple examples – Python. Packages

of interest for IoT.

UNIT III ELEMENTS OF IoT 9

Sensors and actuators – Analog sensors, Digital sensors-examples – Participatory Sensing, Industrial IoT and

Automotive IoT – Actuator- Communication modules – Zigbee - LoRa - RFID - Wi-Fi - Power sources

UNIT IV BUILDING IoT WITH CLOUD AND DATA ANALYTICS 9

IoT platforms – Arduino – Raspberry Pi –Raspberry Pi Interfaces - Cloud Computing in IoT- Benefits of cloud

computing- Forms of cloud computing - Cloud Connectivity - Big Data Analytics – Data Visualization – Bar

graph, clustered Bar chart , Line graph, Pie chart , Area charts & combination charts.

UNIT V CHALLENGES IN IOT AND CASE STUDIES 9

Security Concerns and Challenges - Real time applications of IoT – Home automation – Automatic lighting –

Home intrusion detection – Cities – Smart parking – Environment – Weather monitoring system – Agriculture –

Smart irrigation.

Lecture: 45, Tutorial:0, Total: 45 Hours

TEXT BOOK:

1. Arshdeep Bahga, Vijay Madisetti, "Internet of Things-A hands-on approach", Universities Press,2015

2. Olivier Hersent, David Boswarthick, Omar Elloumi, “The Internet of Things: Key applications and

Protocols”, Wiley Publications 2nd edition , 2013.

REFERENCES:

1. Raj Kamal, “Internet of Things – Architecture and Design Principles”, Mc Graw Hill Education Pvt.Ltd.,

2017.

2. Internet of Things and Data Analytics, Hwaiyu Geng, P.E, Wiley Publications, 2017

3. Manoel Carlos Ramon, ―Intel® Galileo and Intel® Galileo Gen 2: API Features and Arduino Projects for

Linux Programmers‖, Apress, 2014

4. Marco Schwartz, ―Internet of Things with the Arduino Yun‖, Packt Publishing, 2014.

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09.12.2019 Regulations-2015R Regulations-2014

U15EE924R AUTOMOTIVE ELECTRICAL TECHNOLOGY 3 0 0 3

COURSE OUTCOMES

At the end of the course, the students will be able to:

Categorize various automotive batteries construction, testing with maintenance and lighting system in vehicle.

Analyse the various charging system components and starting motor characteristics.

Analyse the electronic controlled ignition systems and injection systems used in automotive vehicles.

Explain the various sensors used in automotive field and detail on the usage of microprocessors for vehicles sophistication.

Describe the various safety and accessory systems in automotive vehicles.

UNIT I BATTERIES AND LIGHTING SYSTEM 9

Principle and construction of Lead Acid Battery, Battery Rating, Capacity and Efficiency, Charging

Techniques, Testing and Maintenance. Battery developments and its types.

Automotive Wiring, Lighting design, Vehicle interior lighting system, vehicle exterior lighting system.

UNIT II ELECTRICAL COMPONENTS 9

Charging system components, Generators and Alternators, types, construction and Characteristics. Voltage and

Current Regulation, Cut –out relays and regulators, Charging circuits for D.C. Generator, A.C. Single Phase and

Three – Phase Alternators.

Requirements of Starter Motor, Starter Motor types, construction and characteristics, Starter drive mechanisms,

Starter Switches and Solenoids.

UNIT III ELECTRONIC IGNITION AND INJECTION SYSYTEM 9

Introduction to conventional ignition system, Electronic Ignition System, Capacitive Discharge Ignition,

transistorized ignition system, Distributor less Ignition System, digital ignition system, Ignition Triggering

devices, Electronic fuel injection systems.

UNIT IV SENSORS AND MICROPROCESSORS IN AUTOMOBILES 9

Basic sensor arrangements. Types of sensors – oxygen sensor, hot wire anemometer sensor, vehicle speed

sensor, detonation sensor, accelerometer sensor, crank position sensor. Microprocessor and microcomputer

controlled devices in automobiles such voice warning system, travel information system, keyless entry system,

automatic transmission system, electronic steering system.

UNIT V SAFETY SYSTEMS AND ACCESSORIES 9

Antilock braking system, air bag and seat restraint system, road navigation system, anti-theft system, Central

locking system, Cruise control.

Dash Board Instruments and their Sensors like Speedometer, Odometer, Fuel Level Indicator Oil Pressure,

Horns and wiper Mechanisms.

Lecture: 45, Tutorial:0, Total: 45 Hours

TEXT BOOK:

1. Tom Denton, Automobile Electrical and Electronics systems, Elsevier Butterworth-Heinemann, Third

Edition 2004.

2. A.K. Babu, Automotive Electrical and Electronics, Khanna Publishing Company, 2016.

REFERENCES:

1. Kholi .P.L. “Automotive Electrical Equipment”, Tata McGraw-Hill co ltd, New Delhi, 2004

2. Judge. A.W., “Modern Electrical Equipment of Automobiles”, Chapman & Hall, London,

3. Robert N Brady, “Automotive computers and Digital Instrumentation. A Reston Book, Prentice Hill, Eagle

Wood Cliffs, New Jersey, 1988.

4. Tom Denton, “Automotive and Mechanical Electrical Technology” Butterworth-Heinemann Publication,

2011.

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09.12.2019 Regulations-2015R Regulations-2014

Page 60: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

Sona College of Technology, Salem

(An Autonomous Institution)

Courses of Study for B.E/B.Tech. Semester VI under Regulations 2015R (CBCS)

Branch: Electronics and Communication Engineering

*Any 2 electives to be opted by a student among 4 professional electives.

Approved By

Chairperson, Electronics and Communication Engineering BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal

Dr.R.S.Sabeenian Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to:-

HOD/Electronics and Communication Engineering, Sixth Semester BE ECE Students and Staff, COE

(Page 1 of 3)

S. No Course Code Course Title Lecture Tutorial Practical Credit

Theory

1 U15EC601R Antenna and Wave Propagation 3 0 0 3

2 U15EC602R Digital Image Processing 3 0 0 3

3 U15EC603R Embedded Systems 3 0 0 3

4 U15EC902R

Professional

Elective –

Wireless Communication 3 0 0 3*

5 U15EC916R Measurement and Instrumentation 3 0 0 3*

U15EC917R Bio-Medical Instrumentation 3 0 0 3*

U15EC926R Machine Learning and Its Applications 2 0 2 3*

Page 61: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

Approved By

Chairperson, Electronics and Communication Engineering BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal

Dr.R.S.Sabeenian Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to:-

HOD/Electronics and Communication Engineering, Sixth Semester BE ECE Students and Staff, COE

(Page 2 of 3)

6

U15CE1002R

Open

Elective –

Disaster Management

3

0

0

3

U15CE1003R Energy Efficiency And Green Building

U15CE1004R Municipal Solid Waste Management

U15CS1001R Big Data Analytics

U15CS1002R Cloud Computing

U15CS1003R Internet Of Things

U15CS1004R Mobile Application Development

U15EE1006R Renewable Energy Systems

U15IT1003R Problem Solving Techniques Using Java

Programming

U15IT1004R Python Programming

Page 62: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

Approved By

Chairperson, Electronics and Communication Engineering BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal

Dr.R.S.Sabeenian Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to:-

HOD/Electronics and Communication Engineering, Sixth Semester BE ECE Students and Staff, COE

(Page 3 of 3)

U15ME1002R Renewable Energy Sources

U15ME1004R Industrial Safety

Practical

7 U15EC604R Digital Image Processing Laboratory 0 0 2 1

8 U15EC605R Embedded Systems Laboratory 0 0 2 1

9 U15CS606R Data Structures and Object Oriented Programming in

C++ Laboratory

0 0 2 1

10 U15GE601BR Soft Skills and Aptitude - IV 0 0 2 1

Total Credits 22

Page 63: Courses of Study for B.E/B.Tech. Semester VI under

09.12.2019 Regulations-2015R Regulations-2014

U15EC601R ANTENNA AND WAVE PROPAGATION L T P C

3 0 0 3

COURSE OUTCOMES

At the end of each unit, the students will be able to -

1. Analyze the antenna fundamentals and Radiation pattern.

2. Evaluate the different parameters of antenna arrays.

3. Design microwave antennas for the given specifications.

4. Analyze the different measurement techniques of antenna parameters and special antennas.

5. Analyze the atmospheric and terrestrial effects on radio wave propagation.

UNIT

I

ANTENNA FUNDAMENTALS

Basic Antenna Parameters – Reciprocity Principle – Friis Transmission Formula – Retarded

Vector Potential – Power Radiated and Radiation Resistance of Current Element – Radiation

from Half-wave Dipole Antennas – Folded Dipole – Loop Antenna.

9

UNIT

II

ANTENNA ARRAYS

Antenna Arrays – Broad-side Array – End-Fire Array – Collinear Array and Parasitic Array-

Pattern Multiplication – Binomial Array – Chebyshev Array – Taylor Series.

9

UNIT

III

MICROWAVE ANTENNAS

Helical Antenna – Normal Mode and Axial Mode Operation – Yagi Uda – Antenna- Log Periodic

Antenna – Spiral Antenna – Rhombic Antenna – Horn Antenna – Reflector Antenna - Micro Strip

Antenna.

9

UNIT

IV

ANTENNA MEASUREMENTS AND SPECIAL ANTENNAS

Measurement of Different Antenna Parameters – Radiation Pattern – Gain – Phase – Polarization

– Impedance – Efficiency – Antennas for Special Applications – Antenna on Cellular Handsets –

GPR – Embedded Antennas – UWB – Plasma Antenna.

9

UNIT

V

RADIO WAVE PROPAGATION

Ground Wave Propagation- Attenuation Characteristics for Ground Wave Propagation –

Calculation of Field Strength at a Distance – Space Wave Propagation – Duct Propagation –

Calculation of Field Strength at a Distance – Sky Wave Propagation – Structure of the Ionosphere

– Mechanism of Refraction – Refractive Index – Critical Frequency- Skip Distance – Effect of

Earth’s Magnetic Field – Attenuation Factor for Ionosphere Propagation – Maximum Usable

Frequency – Fading and Diversity Reception.

9

Total: 45

TEXT BOOKS

1.

John D. Kraus and Ronald Marhefka, “Antennas”, Tata McGraw-Hill Book Company, Reprint 2016.

2. C.A.Ballanis, “Antenna Theory Analysis and Design”, Wiley inter science, 2006.

REFERENCE BOOKS

1. Prasad K.D., “Antennas and Wave Propagation”, Satya Prakashan, Reprint 2018.

2. Jordan E.C and Balmain, “Electro Magnetic Waves and Radiating Systems”, PHI, 2015.

3. Collins R.E., “Antennas and Radio Propagation”, McGraw-Hill, 1987.

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09.12.2019 Regulations-2015R Regulations-2014

U15EC602R DIGITAL IMAGE PROCESSING L T P C

3 0 0 3

COURSE OUTCOMES

At the end of each unit, the students will be able to -

1. Describe the fundamentals of monochrome and color image processing and analyse the basic relations between

pixels, connectivity and distance measures.

2. Apply DFT DCT, DST, Walsh, Hadamard, Haar, wavelet and SVD transform for images.

3. Apply image enhancement techniques in spatial and frequency domain.

4. Analyze image restoration using constrained and unconstrained filters and image segmentation approaches.

5. Appraise the need for image compression using lossy and lossless techniques and Morphological operations.

UNIT

I

DIGITAL IMAGE FUNDAMENTALS AND TRANSFORMS

Fundamental Steps in Digital Image Processing – Elements of Visual Perception – Some Basic

Relationship Between Pixels – Connectivity – Distance Measure – Brightness – Contrast – Hue- Saturation

– Mach Band Effect – Image Sampling – Quantization – Dither – Colour Image Fundamentals RGB – HSI

Models – Conversion from RGB to HSI.

9

UNIT

II

IMAGE TRANSFORMS

1D DFT – 2D Transforms – DFT – DCT – DST – Walsh – Hadamard – Haar Transform – Discrete

Wavelet Transform – Multi Resolution Analysis – SVD

9

UNIT

III

IMAGE ENHANCEMENT

Spatial Domain Approach – Point Processing – Image Negative – Contrast Stretching – Gray Level Slicing

– Histogram Equalization – Image Addition – Subtraction – Averaging – Smoothing Filters – Spatial LPF

– Median Filter – Sharpening Filters – Spatial HPF – High Boost Filter – Derivative Filters Frequency

Domain Filters – Homomorphic Filter.

9

UNIT

IV

IMAGE RESTORATION AND SEGMENTATION

Degradation Model – Noise Models – Types of Restoration – Inverse Filtering – Least Mean Square

(wiener–parametric wiener) Filter – Image Segmentation – Point – Line and Edge Detection – Region

Based Segmentation – Region Splitting and Merging – Thresholding.

9

UNIT

V

IMAGE COMPRESSION AND MORPHOLOPGICAL OPERATIONS

Image Compression – Lossless Compression – Huffman Coding – Minimum Variance Huffman Coding –

Arithmetic Coding – LZW Coding – Lossy Compression – Transform Coding – Compression Standards –

JPEG Image Compression Standards – MPEG Video Compression Standards-Block Diagram Approach.

Standard Binary Morphological operations-Dilation and Erosion based Operations.

9

Total 45

TEXT BOOKS

1. Rafael C- Gonzalez- Richard E-Woods, “Digital Image Processing”, Pearson Education, Eleventh Impression,

2013.

2. Jayaraman S., Esakkirajan and Verrakumar, “Digital Image Processing”, TMH New Delhi, 2011.

REFERENCE BOOKS

1. Annadurai S., R. Shanmugalakshmi, “Fundamentals of Digital Image Processing”, Pearson Education India,

2007.

2. Anil K- Jain, “Fundamentals of Digital Image Processing”, Pearson/Prentice Hall of India, 2002.

3. Sridhar.S, “Digital Image Processing”, Oxford University Press, First Edition, 2011.

4. Sabeenian R.S., “Digital Image Processing”, Sonaversity publication, Second Edition reprint, 2014.

5. Kenneth R. Castleman, “Digital Image Processing”, Pearson, 2009.

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09.12.2019 Regulations-2015R Regulations-2014

U15EC603R EMBEDDED SYSTEMS L T P C

3 0 0 3

COURSE OUTCOMES

At the end of each unit, the students will be able to -

1. Obtain a broad knowledge on hardware and software architectures of an embedded system.

2. Get the various design process and parameter analysis of the embedded system.

3. Gain the familiarity on PIC microcontroller.

4. Provide an in depth exposure on real time operating system.

5. Design the software and hardware architecture of real time applications.

UNIT

I

ARCHITECTURE OF EMBEDDED SYSTEMS

Introduction – Application Areas – Categories of Embedded System – Specialties of Embedded

System – Recent Trends in Embedded System – Overview of Embedded System Architecture –

Hardware Architecture – Software Architecture – Communication Software –Process of

Generation of Executable Image – Development-Testing.

9

UNIT

II

DESIGN AND ANALYSIS OF EMBEDDED SYSTEMS Embedded System Design Process – Formalism for System Design – Memory System

Mechanism – CPU Performance – CPU Power Consumption – CPU Buses – Memory Devices

– I/O Devices – Program Design – Model of Programs – Analysis and Optimization of

Execution Time – Power – Energy – Program Size – Program Validation and Testing.

9

UNIT

III

PIC MICROCONTROLLER

PIC 16C61 / 71 Microcontroller Architecture – FSR – Reset Action – Oscillatory Connections –

Memory Organizations – Instructions – Addressing Modes – I/O Ports-Interrupts – Timers –

ADC.

9

UNIT

IV

REAL-TIME OPERATING SYSTEM CONCEPTS Architecture of the Kernel – Task and Task Scheduler – Interrupt Service Routines –

Semaphores – Mutex – Mailboxes – Message – Queues – Event Registers – Pipes – Signals –

Timers – Memory Management – Priority Inversion Problem.

9

UNIT

V

REAL-TIME OPERATING SYSTEM TOOLS AND CASE STUDIES

Case Study of an Automatic Chocolate Vending Machine using MUCOS RTOS – Case Study

of an Embedded System for Set-top Boxes – Case Study of an Embedded System for a PDA.

9

Total 45

TEXT BOOK

1. 1

.

Marilyn Wolf, “Computers as Components - Principles of Embedded Computer System Design”, 4th

Edition, Morgan Kaufmann Publisher, (An Imprint from Elsevier), 2016.

REFERENCE BOOKS

1. Ajay V Deshmukh, “Microcontrollers Theory and Applications”, 3rd

Edition Paper back, Tata McGraw

Hill education, 2017.

2. Shibu K V, “Introduction to Embedded Systems”, 2nd

Edition, McGraw Hill, 2016.

3. Raj Kamal, “Embedded Systems Architecture Programming and Design”, 3rd Edition, TMH, 2014.

4. Xiaocong Fan, “Real-Time Embedded Systems: Design Prinicple and engineering practices”, SCI-Tech Connect, Elsevier,

2016.

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09.12.2019 Regulations-2015R Regulations-2014

U15EC604R DIGITAL IMAGE PROCESSING LABORATORY L T P C

0 0 2 1

COURSE OUTCOMES

At the end of each experiment ,the students will be able to -

1. Write a MATLAB code to demonstrate and perform various operations related to image processing.

2. Generate a LABVIEW code to demonstrate and perform various operations related to image processing.

3. Write a MATLAB code or Generate a LABVIEW code to extract features from Images.

Exp.No List of Experiments

Using Lab VIEW

1. Displaying the Image Properties and Pixel Distance

2. Re-Sample a given image

3. Extraction of planes from a given image - RGB and HSI

4. Image Arithmetic (Addition, Subtraction, Multiplication and division of two image)

5. Scalar processing of an image (Addition, Subtraction, Multiplication and division of a scalar

quantity on an image)

6. Computing the DWT of an image and displaying the LL, LH, HL and HL images

7. Computing Discrete Fourier Transform of a given image

8. Extracting 1st Order statistical features of an image (Mean and Standard Deviation alone)

9. Computing the Image Histogram and Histogram equalization for the given image.

Using MATLAB

10. Demonstrating False Contour Effect

11. Extraction and display of each bits as an image for a given 8 bit gray scale image

12. Computing Fourier Transform and reconstruction of original image from Fourier Transform

a. Without Zero-padding

b. With Zero-padding

13. Frequency Domain Image Enhancement

a. Low Pass Filter

b. High Pass Filter

c. Band Pass Filter

14. Spatial Domain Image Enhancement

d. Average Filter

e. Median Filter

f. Edge Enhancement

15. Demonstrating JPEG Compression using DCT

16. Creating a degradation model for a given image and applying Wiener Filter

17. Edge Detection Algorithms

Total:30

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09.12.2019 Regulations-2015R Regulations-2014

U15EC605R EMBEDDED SYSTEMS LABORATORY L T P C

0 0 2 1

COURSE OUTCOMES

At the end of each experiment ,the students will be able to -

1. Design an embedded system to get input from and to display using microcontrollers. (8951

Microcontroller, Arduino UNO board and TI MSP430 microcontroller)

2. Design a system by interfacing analog and digital sensors with microcontrollers using

various communication protocols. (8951 Microcontroller, Arduino UNO board and TI

MSP430 microcontroller)

3. Design a system by interfacing with latest microcontrollers like Intel Galileo Gen 2 board

and Raspberry Pi 3.

Exp.No List of Experiments

The interfacing, programming and simulation of the following 1 to 8 experiments are done

with 8951 Microcontroller, Arduino UNO board and TI MSP430 microcontroller using Keil

software, Arduino IDE and Code Composer Studio IDE respectively.

1 LED Control using toggle switches and pushbuttons.

2 Interfacing matrix keypad ,16 X 2 LCD and 8 X 8 LED Dot Matrix

3 Interfacing Relay and Buzzer.

4 PWM Based Speed Control of Servo Motor by Potentiometer.

5 Interfacing analog and digital sensors with microcontrollers based on serial/parallel

communication. (UART)

6 Interfacing analog and digital sensors with microcontrollers based on I 2C and SPI

protocol.

7 Study of interrupts using IR obstacle sensor and developing a visitor counter

8 Interfacing of microcontrollers with MATLAB.

9 Study of Intel Galileo Gen 2 board and its programming.

10 Study of Raspberry Pi 3 board, Programming & Simulation in Python

Simulators/Tools.

11 Real time case study involving design of IOT data logger, WiFi applications by

interfacing with microcontrollers.

Total:30

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09.12.2019 Regulations-2015R Regulations-2014

U15CS606R DATA STRUCTURES AND OBJECT ORIENTED

PROGRAMMING IN C++ LABORATORY

L T P C

0 0 2 1

COURSE OUTCOMES

At the end of each experiment, the students will be able to

1. Design and develop simple programs using basic concepts of C++

2. Develop programs using the concept of classes, static members and constructors

3. Develop programs using Polymorphism and inheritance.

Exp. No. List of Experiments:

1. Functions with call by value, call by reference, default arguments and function overloading.

2. Design of classes with static and non static members, friend functions and creating array of objects.

3. Implementation of inheritance and polymorphism.

4. Array implementation of list ADT.

5. Linked list implementation of list ADT.

6. Implementation of stack ADT using linked list.

7. Conversion of infix to postfix expression.

8. Implementation of queue ADT using array.

9. Implementation linear search & binary search.

10. Implementation of sorting algorithms.

11. Implementation of breadth first and depth first traversals.

Total:30

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09.12.2019 Regulations-2015R Regulations-2014

U15EC902R WIRELESS COMMUNICATION L T P C

3 0 0 3

COURSE OUTCOMES

At the end of each unit, the students will be able to -

1. Apply the knowledge of basic communication systems and its principles, describe the Wireless Systems and

analyze the Spectrum Allocation.

2. Mathematically analyze mobile radio propagation mechanisms and diversity Techniques.

3. Analyze the Path loss models, Design Base Station (BS) parameters and analyze the antenna configurations.

4. Analyze and examine the multiple access techniques and its application.

5. Assess the latest wireless technologies.

UNIT

I

INTRODUCTION TO COMMUNICATION SYSTEMS

History of Wireless Communication – Wireless Vision – Technical Issues – Current Wireless

Systems – Cellular Telephone Systems – Cordless Phones – Wireless LANs – Wide Area Wireless

Data Service – Broadband Wireless Access – Paging Systems – Satellite Networks – Low-Cost

Low Power Radios – Ultra Wideband Radios – The Wireless Spectrum –Methods for Spectrum

Allocation – Spectrum Allocations for Existing Systems.

9

UNIT

II

MOBILE RADIO PROPAGATION,FADING AND DIVERSITY TECHNIQUES

Mobile Radio Propagation – Reflection – Reflection from Dielectrics – Brewster Angle – Reflection from Perfect Conductors – Ground Reflection (Two-Ray) model – Diffraction – Fresnel Zone Geometry – Knife - Edge Diffraction Model – Multiple Knife - Edge Diffraction – Scattering – Diversity Techniques.

9

UNIT

III

PATH LOSS MODELS AND BASICS OF ANTENNA

Path Loss Prediction over Hilly Terrain – Practical Link Budget Design using Path Loss Models –

Log-Distance Path Loss Model – Log - Normal Shadowing – Determination of Percentage of Coverage Area – Design Parameters at Base Station – Antenna Location – Spacing – Heights and

Configurations.

9

UNIT

IV

MULTIPLE ACCESS TECHNIQUES

Introduction to Multiple Access Techniques – Frequency Division Multiple Access (FDMA) – Time

Division Multiple Access (TDMA) – Code Division Multiple Access (CDMA) – Spread Spectrum

Multiple Access – Power Control –WCDMA – CDMA Network Design OFDM and MC-CDMA.

9

UNIT

V

LATEST WIRELESS TECHNOLOGIES

Global System for Mobile (GSM) – GSM Services and Features – GSM System Architecture –

GSM Radio Subsystems and Channel Types – 3G and 4G(LTE) – NFC Systems – WLAN

Technology – HiperLAN – Ad hoc Networks – Bluetooth.

9

Total: 45

TEXT BOOKS

1. T.S.Rappaport, “Wireless Communication Principles”, (2/e), Pearson, 2013.

2. Andrea Goldsmith, “Wireless Communication”, Cambridge University Press, 2012.

REFERENCE BOOKS

1. A.F.Molisch, “Wireless Communications”, Wiley, 2013.

2. P .Muthu Chidambara Nathan, “Wireless Communications”, PHI, 2013.

3. W .C.Y.Lee, “Mobile Communication Engineering”, (2/e), McGraw- Hill, 1998.

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09.12.2019 Regulations-2015R Regulations-2014

U15EC916R MEASUREMENT AND INSTRUMENTATION

L T P C

3 0 0 3

COURSE OUTCOMES

At the end of each unit, the students will be able to -

1. Discuss the basics of measurement and to study the various digital and analog instruments

2. Examine the fundamentals of signal generators and analyzers

3. Analyze the working of cathode ray oscilloscope and digital storage oscilloscope.

4. Explain the various storage and display devices

5. Explain basics of virtual instrumentation with the basic programming technique

UNIT

I

DIGITAL & ANALOG INSTRUMENTS

Digital method for measuring frequency, period, Time interval - Digital voltmeter -

Microprocessor based DMM - IEEE 488 bus - D.C, A.C voltmeters – Ammeters – Multimeter –

True RMS meter.

9

UNIT

II

SIGNAL GENERATORS AND ANALYZERS

Sine wave generator – Frequency synthesized sine wave generator – Sweep frequency generator,

pulse and square wave generator – Function generator – Wave analyzer – Applications –

Harmonic distortion analyzer – Spectrum analyzer – Applications.

9

UNIT

III

CATHODE RAY OSCILLOSCOPE

General purpose oscilloscope – Vertical and horizontal deflection systems – Delay line –

Multiple trace – Dual beam and dual trace – Probes – Oscilloscope techniques – Special

oscilloscopes – Storage oscilloscopes – Sampling oscilloscope.

9

UNIT

IV

DISPLAY AND RECORDING DEVICES

Bar graph display – Segmental and dot matrix display – X–Y recorders – magnetic tape

recorders – Digital recording – Data loggers. Interference and screening – Electrostatic and

electromagnetic interference and earth loops.

9

UNIT

V

VIRTUAL INSTRUMENTATION

Historical perspective – Need of VI – Advantages of VI – Define VI – Block diagram &

Architecture of VI – Data flow techniques – Graphical programming in data flow – Comparison

with conventional programming

9

Total: 45

TEXT BOOKS

1. Albert D. Helfrick and William D. Cooper, “Modern Electronic Instrumentation and Measurement

Techniques”, 2nd

edition, Prentice Hall of India, 2008.

2. Sanjay Gupta & Joseph John, “Virtual Instrumentation using LabVIEW”, 2nd

edition, McGraw Hill, 2017.

REFERENCE BOOKS

1. Oliver, B.M. and Cage. J.M., “Electronic Measurements and Instrumentation”, 1st edition McGraw Hill,

2008.

2. Joseph J. Carr, “Elements of Electronic Instrumentation and Measurements”, 3rd Edition,Pearson

Education, 2003.

3. Bell, D.A., “Electronic Instrumentation and Measurements”, 3rd

edition, Prentice Hall of India, 2013

4. Rajendra Prasad, “Electronic Measurements and Instrumentation”, 4th edition, Khanna Publishers,

2012.

5. Gupta, B.R., “Electronics and Instrumentation”, S. Chand Co. (P) Ltd., 2003.

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09.12.2019 Regulations-2015R Regulations-2014

U15EC917R BIO-MEDICAL INSTRUMENTATION

L T P C

3 0 0 3

COURSE OUTCOMES

At the end of each unit, the students will be able to -

1. Summarize various aspects of bio-potential recording systems from the body.

2. Interpret the various temperature measurement methods and translate flow of blood as metrics.

3. Describe the special features of various types of measuring equipment based on heart.

4. Outline the objectives and working principles of the various diagnosis and radiological equipments.

5. Provide the applications of computer in medical field.

UNIT

I

RECORDING INSTRUMENTS Electro-Physiology and Bio-potential Recording The Origin of Bio-potentials – Bio-potential

Electrodes – Biological Amplifiers – ECG – EEG – EMG – PCG – EOG – Lead Systems and

Recording Methods – Typical Waveforms and Signal Characteristics.

9

UNIT

II

MEASUREMENT AND ANALYSIS TECHNIQUE Measurement of Blood Flow – Radiographic – Indicator Dye Dilution – Thermal Convection –

Magnetic Blood Flow Rate – Ultrasonic Blood Flow meter – Sphygmomanometer – Blood Gas

Analyzer – Oximeter – Auto-Analyzers – Electrophoresis – Colorimeter – Spectrophotometer –

Flame Photometer.

9

UNIT

III

THERAPEUTIC EQUIPMENTS AND PATIENT SAFETY

Stimulators – Defibrillators – Pacemakers – Diathermy – Respirators – Blood Pumps Ventilator

– Haemo-dialysis Machine – Role of Laser in Health Care – Patient Safety – Macro – Micro

Shock – Preventive Measures – Earth-Free Patient Monitoring.

9

UNIT

IV

MEDICAL IMAGING X-Ray Imaging and CT Scan – Application and X-Ray Therapy – CAT Scan – MRI – PET – Physics of Ultrasound – Ultrasound Imaging – A-Scan and B-Scan Displays – Multi Array Scanning – M-Mode Scanning – Advantages and Disadvantages of Ultrasound Scanning

Thermal Imaging Systems.

9

UNIT

V

COMPUTER APPLICATIONS IN MEDICAL FIELD

Computer Applications in Medicine – Patient Monitoring System – Endoscopy Unit – Radio-pill

– Telemedicine and Medical Informatics. 9

Total: 45

TEXT BOOK

1. Leislie Cromwell, “Biomedical instrumentation and measurement”, Prentice Hall of India, New Delhi,

2015.

REFERENCE BOOKS

1. Khandpur, R.S., “Handbook of Biomedical Instrumentation”, TATA McGraw-Hill, New Delhi, 2015.

2. Ananda Natarajan.R, “Biomedical instrumentation and measurement”, Prentice Hall of India, New Delhi,

2015.

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09.12.2019 Regulations-2015R Regulations-2014

U15EC926R MACHINE LEARNING AND ITS APPLICATIONS L T P C

2 0 2 3

COURSE OUTCOMES

At the end of each unit, the students will be able to -

1. Realize the significance of machine learning techniques and its parameters

2. Implement basic machine learning algorithms in Python and Pandas.

3. Inscribe a python program for supervised learning and its applications

4. Solve basic classification problems using ANN and unsupervised classification

5. Design an architecture for CNNs and its applications

UNIT

I

INTRODUCTION TO MACHINE LEARNING AND ITS PARAMETERS

Basics of Vectors and Matrices -Machine learning – Application of Machine learning- Types of

Machine learning – Representation of Model- Cost function Notation – Gradient Descent

Algorithm – Measuring Accuracy of Hypothesis Function – Confusion Matrix - Sensitivity – Specificity – Precision – Accuracy-False Negative Rate-False Positive Rate & F1 Score.

12

UNIT

II

DATA PRE-PROCESSING USING PANDAS & PYHTON

Introduction about Python – Basic Syntax- Python identifiers- Basic Operations of Python –

Python Decision Making- Looping – Functions – NumPy -Matplotlib – Introduction to Pandas

and Scikit Learn & programming -Data cleaning – Data Integration – Data Reduction -Standard

Deviation-Variance-Covariance-Eigen Values & Vectors-PCA.

12

UNIT

III

SUPERVISED LEARNING ALGORITHMS

Introduction to supervised learning and regression - Statistical Relation between Two Variables

and Scatter Plots – steps to establish a Linear Regression using Python– Evaluation of Model

Estimators -Introduction and scenarios of Logistic Regression – Building Logistic Regression

Model using Python and Pandas - Maximal Likelihood Estimation using python- Steps to

construct a Decision Tree.

12

UNIT

IV

BASICS OF ANN, SVM & UNSUPERVISED LEARNING ALGORITHMS

Introduction to ANN – Biological Neuron – Basic of ANN Architectures – Activation Functions

– McCulloch Pitts Model – K-NN – Linear SVM with examples (Vectors) using python – Non-

Linear SVM with examples (Vectors) using SVM - Introduction to clustering – Types of

Clustering – K- Means Algorithm theory and programs.

12

UNIT

V

CONVOLUTIONAL NEURAL NETWORKS (CNNs DEEP LEARNING)

1D & 2D-Convolution – Convolution layer and its types – Pooling layer and its types-Rectified

linear units’ layer-Architecture design procedure for CNN- LeNET and AlexNET CNN

architecture-DIGITS-Procedure and Programs for Image classifications.

12

Total: 60

TEXT BOOK

1.

Anuradha Srinivasaraghavan, Vincy Joseph , Machine Learning, Wiley-2019.

REFERENCE BOOKS

1. Dr. Soman K. P., Loganathan, R., and Ajay, V., Machine Learning with SVM and other Kernel

methods. PHI Learning Pvt. Ltd., 2009.

2. Christopher M. Bishop, Pattern Recognition and Machine Learning -Springer -2010

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09.12.2019 Regulations-2015R Regulations-2014

Sona College of Technology, Salem

(An Autonomous Institution)

Courses of Study for B.E/B.Tech. Semester VI under Regulations 2015R (CBCS)

Branch: Computer Science and Engineering

Approved By

Chairperson, Computer Science and Engineering BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal

Dr.B.Sathiyabhama Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to:-

HOD/Computer Science and Engineering, Sixth Semester BE CSE Students and Staff, COE

S. No Course Code Course Title Lecture Tutorial Practical Credit

Theory

1 U15GE602AR Principles of Management 3 0 0 3

2 U15CS601R Principles of Compiler Design 3 0 0 3

3 U15CS602R Internet of Things 3 0 0 3

4 U15CS919R Elective – Software Project Management 3 0 0 3

U15CS923R Elective-Graph Theory and Combinatorics

5 U15CS916R Elective –Mobile Device Software Development 3 0 0 3

U15CS915R Elective-Business Intelligence

6 U15CE1002R Open Elective - Disaster Management

3 0 0 3

U15CE1003R Energy Efficiency and Green Building

U15CE1004R Municipal Solid Waste Management

U15EE1006R Renewable Energy Systems

U15FT1001R Fundamentals of Fashion Design

U15ME1002R Renewable Energy Sources

U15ME1004R Industrial Safety

Practical

7 U15CS603R Compiler Design Laboratory 0 0 4 2

8 U15CS604R Internet of Things Laboratory 0 0 4 2

9 U15CS605R Creative and Innovative Project 0 0 2 1

10 U15CS601BR Soft Skills and Aptitude – IV 0 0 2 1

Total Credits 24

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09.12.2019 Regulations-2015R Regulations-2014

U15GE602AR PRINCIPLES OF MANAGEMENT 3 0 0 3

COURSE OUTCOMES

At the end of the course, students will be able to

Identify the organizational factors and roles of Management

Apply planning, forecasting and decision making in real time applications

Apply the concepts of organizing in an organization

Analyze the concepts of delegation of authority and Organization culture.

Apply the concepts of controlling in an organization

UNIT I INTRODUCTION 9

Definitions of Management-Scope of Management-Levels of Management-Functions and Roles of a manager-

Evolution of Management thought-Organisation and Environmental Factors-Forms of Business Organizations-

Corporate Social Responsibility-recent trends and challenges in global management scenario.

UNIT II PLANNING 9

Definition of Planning-Nature and purpose of planning-Planning process-Types of plans-Objectives-

Management of objective(MBO)-Management by exception-Types of strategies-Decision Making: definition

and process-Types of managerial decision-group decision making techniques-Decision making under different

conditions-forecasting and its techniques.

UNIT III ORGANISING 9

Definition of organizing-Nature and purpose of organizing-Formal and informal organizations-organization

charts-Organization structures-Span of control-factors determining effective span-line and staff authority-

Departmentation-Centralization and Decentralization-Delegation of authority-staffing-selection and

recruitment-Orientation-Training and development-Performance Appraisal-organization change-Staffing

UNIT IV DIRECTING 9

Directing: nature and purpose-Motivation and Satisfaction-Motivation theories-job enrichment-definition of

leadership-elements of leadership-Leadership styles-leadership theories-Communication-process and barriers to

effective communication-Organization culture-Elements and types of culture-Managing cultural diversity.

UNIT V CONTROLLING 9

Process of controlling-Types of control-Budgetary and non-budgetary control techniques- MIS-Managing

productivity-Constant control-purchase control- Maintenance control-quality control-planning operations-

performance standards-Measurement of performance-Remedial actions.

Total :45 hours

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09.12.2019 Regulations-2015R Regulations-2014

TEXT BOOKS

1. Stephen P. Robbins & Mary Coulter, “Management”, Prentice Hall (India) Pvt. Ltd., 10th

Edition, 2009.

2. JAF Stoner, Freeman R.E and Daniel R Gilbert “Management”, Pearson Education, 6th

Edition, 2004.

REFERENCES

1. Stephen A. Robbins & David A. Decenzo & Mary Coulter, “Fundamentals of Management”

Pearson Education, 7th Edition, 2011.

2. Robert Kreitner & Mamata Mohapatra, “ Management”, Biztantra, 2008.

3. Harold Koontz & Heinz Weihrich “Essentials of management” Tata McGraw Hill,1998.

4. Tripathy PC & Reddy PN, “Principles of Management”, Tata Mcgraw Hill, 1999

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09.12.2019 Regulations-2015R Regulations-2014

U15CS601R PRINCIPLES OF COMPILER DESIGN 3 0 0 3

COURSE OUTCOMES

At the end of the course, students will be able to

Construct the various phases of compiler using compiler construction tools

Design and implement a lexical analyzer

Design and analyze various top down and bottom up parsers

Generate the Intermediate Languages for code generation

Design and analyze code generation schemes and optimized compilers

UNIT I INTRODUCTION TO COMPILERS 7

Translators-Compilation and Interpretation-Language processors -The Phases of Compiler-Errors Encountered

in Different Phases-The Grouping of Phases-Compiler Construction Tools.

UNIT II LEXICAL ANALYSIS 9

Role of Lexical Analyzer-Lexical Errors-Expressing Tokens by Regular Expressions-Converting Regular

Expression to DFA- Minimization of DFA-Language for Specifying Lexical Analyzers-LEX-Design of Lexical

Analyzer for a sample Language.

UNIT III SYNTAX ANALYSIS 10

Role of the Parser-Context Free Grammars -Top Down Parsing -General Strategies-Recursive Descent Parser

Predictive Parser-LL(1) Parser-Shift Reduce Parser-LR Parser -LR (0)Item Construction of SLR Parsing Table -

Introduction to LALR Parser - Error Handling and Recovery in Syntax Analyzer-YACC-Design of a syntax

Analyzer for a Sample Language .

UNIT IV SYNTAX DIRECTED TRANSLATION & INTERMEDIATE CODE GENERATION

9

Syntax directed Definitions- Run-Time Environments- Storage Organization-Storage Allocation Strategies-

Symbol Tables-Intermediate Code Generation – Intermediate languages – Declarations – Assignment

Statements-Boolean expressions – Case statements- Backpatching - Procedure calls.

UNIT V CODE OPTIMIZATION AND CODE GENERATION 10

Principal Sources of Optimization-DAG- Optimization of Basic Blocks-Global Data Flow Analysis-Efficient

Data Flow Algorithms-Issues in Design of a Code Generator - A Simple Code Generator Algorithm.

Case Study: Single pass and two pass compilers.

Total : 45 hours

TEXTBOOKS

1. Alfred V Aho, Monica S. Lam, Ravi Sethi and Jeffrey D Ullman, “Compilers – Principles, Techniques and

Tools”, 2nd Edition, Pearson Education, 2014.

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09.12.2019 Regulations-2015R Regulations-2014

REFERENCES

1. Randy Allen, Ken Kennedy, “Optimizing Compilers for Modern Architectures: A Dependence-based

Approach”, Morgan Kaufmann Publishers, 2002.

2. Steven S. Muchnick, “Advanced Compiler Design and Implementation, “Morgan Kaufmann Publishers -

Elsevier Science, India, Indian Reprint 2003.

3. Keith D Cooper and Linda Torczon, “Engineering a Compiler”, Morgan Kaufmann Publishers Elsevier

Science, 2004. 4. Charles N. Fischer, Richard. J. LeBlanc, “Crafting a Compiler with C”, Pearson

Education, 2008.

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09.12.2019 Regulations-2015R Regulations-2014

U15CS602R INTERNET OF THINGS 3 0 0 3

COURSE OUTCOMES

At the end of the course, students will be able to

Describe the characteristics, physical and logical designs, domains and architecture

Differentiate M2M and IoT, SDN and NFV design methodologies

Identify the various IoT elements appropriate to the applications

Design a portable IoT using Arduino/Raspberry Pi incorporating cloud and analytics

Implement IoT applications for real-time environment

UNIT I FUNDAMENTALS OF IoT 9

Introduction - Definition and Characteristics of IoT - Physical design - IoT Protocols - Logical design -

IoT communication models, IoT Communication APIs - Enabling technologies - Wireless Sensor

Networks, Cloud Computing, Big data analytics, Communication protocols, Embedded Systems, IoT

Levels and Templates - Domain specific IoTs - IoT Architectural view

UNIT II M2M AND IoT DESIGN METHODOLOGY 9

IoT and M2M- difference between IoT and M2M - Software Defined Networks - Network Function

Virtualization - IoT systems management – Needs - NETCONF, YANG - IoT design methodology

UNIT III ELEMENTS OF IoT 9

Sensors and actuators - Communication modules – Zigbee - LoRa - RFID - Wi-Fi - Power sources

UNIT IV BUILDING IoT WITH CLOUD AND DATA ANALYTICS 9

IoT platforms – Arduino – Raspberry Pi - Cloud Computing in IoT - Cloud Connectivity - Big Data Analytics -

Data Visualization

UNIT V CHALLENGES IN IOT AND CASE STUDIES 9

Security Concerns and Challenges - Real time applications of IoT – Home automation – Automatic

lighting – Home intrusion detection – Cities – Smart parking – Environment – Weather monitoring

system – Agriculture – Smart irrigation

Total: 45 hours

TEXT BOOKS

1. Arshdeep Bahga, Vijay Madisetti, "Internet of Things-A hands-on approach", Universities

Press, 2015

2. Olivier Hersent, David Boswarthick, Omar Elloumi, “The Internet of Things: Key applications

and Protocols”, Wiley Publications 2nd edition , 2013

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09.12.2019 Regulations-2015R Regulations-2014

REFERENCES

1. Raj Kamal, “Internet of Things – Architecture and Design Principles”, Mc Graw Hill Education

Pvt. Ltd., 2017

2. Internet of Things and Data Analytics, Hwaiyu Geng, P.E, Wiley Publications, 2017

3. Manoel Carlos Ramon, ―Intel® Galileo and Intel® Galileo Gen 2: API Features and Arduino

Projects for Linux Programmers‖, Apress, 2014

4. Marco Schwartz, ―Internet of Things with the Arduino Yun‖, Packt Publishing, 2014

5. Adrian McEwen, Hakim Cassimally, “Designing the Internet of Things”, Wiley Publications,

2012

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09.12.2019 Regulations-2015R Regulations-2014

U15CS915R BUSINESS INTELLIGENCE 3 0 0 3

COURSE OUTCOMES

At the end of the course, students will be able to

Demonstrate the processes associated with Business Intelligence framework

Solve business scenario, by identifying the metrics, indicators and make recommendations to achieve

the business goals

Develop analytical and critical thinking skills for the development of integrative plans for enterprise-

wide systems that optimize enterprise performance

Design an enterprise dashboard that depicts the key performance indicators which helps in decision

making

Apply business intelligence concepts in cloud computing, ERP systems

UNIT I INTRODUCTION TO BUSINESS INTELLIGENCE 9

Introduction to digital data: Introduction, Types – structured, semi-structured and unstructured. Introduction

to OLTP and OLAP: OLTP Vs OLAP - Architectures (MOLAP, ROLAP, HOLAP) - OLAP Operations - BI

Definitions & Concepts: BI Framework-Data Warehousing concepts and its role in BI-BI Infrastructure

Components – BI Process - BI Technology - BI Roles and Responsibilities - Business Applications of BI- BI

best practices

UNIT II BASICS OF DATA INTEGRATION 9

Data Integration: Concepts: needs and advantages of using data integration-introduction to common data

integration approaches - Meta data - types and sources - Introduction to data quality-data profiling concepts and

applications - Kettle Software: Introduction to ETL using Pentaho data Integration

UNIT III INTRODUCTION TO MULTI-DIMENSIONAL DATA MODELING

Multidimensional data model: Introduction to data and dimension modeling-data modeling basics - Types -

Technique - fact and dimension tables - Dimensional models - Measures and Metrics: Introduction to business

metrics and KPIs - KPI usage in companies - Creating cubes using Microsoft Excel

UNIT IV BASICS OF ENTERPRISE REPORTING 9

Reporting: A typical enterprise - Malcolm Baldrige - quality performance framework - balanced scorecard -

Enterprise dashboard - balanced scorecard vs. enterprise dashboard - Best practices in the design of enterprise

dashboards - Enterprise reporting using MS Access / MS Exce

UNIT V BI APPLICATIONS AND CASE STUDIES 9

Applications: Understanding BI and mobility - BI and cloud computing - BI for ERP systems - Social CRM

and BI - Case Study Briefs: Good Lift HealthCare group - Ten to Ten retail store

Total: 45 hours

TEXT BOOKS

1. RN Prasad and Seema Acharya, “Fundamental of Business Analytics”, Wiley India Pvt. Ltd, 2nd

Edition,

2017

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09.12.2019 Regulations-2015R Regulations-2014

REFERENCES

1. John Boyer, Bill Frank, Brian Green, Tracy Harris, and Kay Van De Vanter “Business Intelligence

Strategy: A Practical Guide for Achieving BI Excellence”, IBM Corporation, 2010

2. R. Sharda, D. Delen, & E. Turban .Business Intelligence and Analytics. Systems for Decision Support,

10th Edition. ; Pearson/Prentice Hall, 2015

3. Swain Scheps “Business Intelligence for Dummies”, Wiley Publishing Inc, 2008

4. Cindi Howson “ Successful Business Intelligence:Secrets to making BI a killer App”, McGraw Hill,

2008

5. Elizabeth Vitt, Michael Luckevich, Stacia Misner “Business Intelligence: Making Better Decisions

Faster”, Microsoft Press, 2002

6. Elizabeth Vitt, Michael Luckevich, Stacia Misner “Business Intelligence: Making Better Decisions

Faster”, Microsoft Press, 2002

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09.12.2019 Regulations-2015R Regulations-2014

U15CS916R MOBILE DEVICE SOFTWARE DEVELOPMENT 3 0 0 3

COURSE OUTCOMES

At the end of the course, the students will be able to

Explain development framework and Construct apps that use Android’s messaging, multitasking,

connectivity and media services to design full-featured apps primarily for mobile devices.

Create applications with clean, effective user interfaces that take advantage of Android’s rich UI

frameworks.

Leverage Android’s effective frameworks and techniques to perform or schedule data retrieval/storage

efficiently in a mobile environment.

Understand the debugging tools in Android Studio and test the execution of a running program to create

more reliable and robust apps.

Design a complete iOS application in xcode by using swift.

UNIT I ANDROID CORE 9

Android: An Open Platform for Mobile Development– Android SDK Features- Android Basic Building Blocks

- Introducing the development framework - Standard development environment for Android applications –

Creating Your First Android Application – Types of Android Application- Android Development Tools – Toast

or Snackbar – Notifications

UNIT II USER INTERFACE 9

Android Application Lifecycle – Activities and their lifecycle, Introducing Layouts - Intents - Fundamental

Android UI Design - Custom View - RecyclerView – Menu based navigation – Drawer navigation - localize an

app – Job Scheduler

UNIT III DATA MANAGEMENT 9

Introducing Adapters - Shared Preferences – Working with the file systems: Reading/writing local data,

accessing the Internal File system, Accessing SD card - Introducing Android Databases- Introducing SQLite-

Content Values and Cursors- Working with SQLite Databases

UNIT IV DEBUGGING AND TESTING 9

Debugging in Android studio – Fixing issues in Android - fundamentals of testing - JUnit tests - Espresso UI -

writing useful automated Android tests - Monetizing, Promoting, and Distributing Applications

UNIT V IOS APPLICATION DEVELOPMENT 9

Introduction and xcode – Swift 4 using playground – Advanced iOS features: Timers, Table and Permanent

storage - Submitting the App to AppStore.

TEXT BOOKS

1. Reto Meier, "Professional Android Application Development", 4th

Edition, Wiley, 2014

2. David Mark, Jack Nutting, Jeff LaMarche and Frederic Olsson, “Beginning iOS 6 Development:

Exploring the iOS SDK”, Apress, 2016.

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REFERENCES

1. Charlie Collins, Michael Galpin and Matthias Kappler, “Android in Practice”, DreamTech, 2016

2. https://developers.google.com/certification/associate-android-developer/study-guide/

3. http://developer.android.com/develop/index.html

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09.12.2019 Regulations-2015R Regulations-2014

U15CS923R GRAPH THEORY AND COMBINATORICS 3 0 0 3

COURSE OUTCOMES

At the end of the course, students will be able to

Apply fundamental concepts of Graph Theory

Solve problems related to trees, connectivity and Planar Graphs

Prove and apply the theorems on Graph coloring , matching and directed graphs

Apply and solve applications involving Permutations and Combinations

Generate functions for various kinds of problems

UNIT I INTRODUCTION 9

Graphs – Introduction – Isomorphism – Sub graphs – Walks, Paths, Circuits –Connectedness – Components –

Euler graphs – Hamiltonian paths and circuits – Trees – Properties of trees – Distance and centers in tree –

Rooted and binary trees.

UNIT II TREES, CONNECTIVITY AND PLANARITY 9

Spanning trees – Fundamental circuits – Spanning trees in a weighted graph – cut sets – Properties of cut set –

All cut sets – Fundamental circuits and cut sets – Connectivity and separability – Network flows – 1-

Isomorphism – 2-Isomorphism – Combinational and geometric graphs – Planer graphs – Different

representation of a planer graph.

UNIT III MATCHING COLOURING AND DIRECTED GRAPH 9

Chromatic number – Chromatic partitioning – Chromatic polynomial – Matching – Covering – Four color

problem – Directed graphs – Types of directed graphs – Digraphs and binary relations – Directed paths and

connectedness – Euler graphs.

UNIT IV PERMUTATIONS AND COMBINATIONS 9

Fundamental principles of counting - Permutations and combinations - Binomial theorem - combinations with

repetition - Combinatorial numbers - Principle of inclusion and exclusion - Derangements - Arrangements with

forbidden positions

UNIT V GENERATING FUNCTIONS 9

Generating functions - Partitions of integers - Exponential generating function – Summation operator -

Recurrence relations - First order and second order – Non-homogeneous recurrence relations - Method of

generating functions.

Total: 45 hours

TEXT BOOKS

1. Narsingh Deo, “Graph Theory: With Application to Engineering and Computer Science”,

Prentice Hall of India, 2014.

2. Grimaldi R.P. “Discrete and Combinatorial Mathematics: An Applied Introduction”, Addison Wesley,

Fifth edition.

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09.12.2019 Regulations-2015R Regulations-2014

REFERENCES

1. Clark J. and Holton D.A, “A First Look at Graph Theory”, Allied Publishers, 1995.

2. Mott J.L., Kandel A. and Baker T.P. “Discrete Mathematics for Computer Scientists and

Mathematicians” , Prentice Hall of India, 2nd

Edition, 2008.

3. Liu C.L., “Elements of Discrete Mathematics”, Mc Graw Hill, 4th

Edition,2012.

Rosen K.H., “Discrete Mathematics and Its Applications”, Mc Graw Hill, 7th edition 2011.

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09.12.2019 Regulations-2015R Regulations-2014

U15CS919R SOFTWARE PROJECT MANAGEMENT 3 0 0 3

COURSE OUTCOMES

At the end of the course, students will be able to

Explore the roles of the project manager and opportunities in project management

Evaluate a project to develop the scope of work, provide accurate cost estimates and to plan

the various activities

Apply best practices to develop competencies and skills in planning and controlling projects to

ensure successful outcomes

Analyze the scheduling resources using various models

Identify suitable project management techniques for the managers.

UNIT I INTRODUCTION TO SOFTWARE PROJECT MANAGEMENT 9

Project Definition – Contract Management – Activities Covered by Software Project Management –

Overview of Project Planning – Stepwise Project Planning.

UNIT II PROJECT EVALUATION 9

Strategic Assessment – Technical Assessment – Cost Benefit Analysis – Cash Flow Forecasting –

Cost Benefit Evaluation Techniques – Risk Evaluation – Software effort Estimation

UNIT III ACTIVITY PLANNING 9

Objectives – Project Schedule – Sequencing and Scheduling Activities – Network Planning Models –

Forward Pass – Backward Pass – Activity Float – Shortening Project Duration – Activity on Arrow

Networks – Risk Management – Nature Of Risk – Types of Risk – Managing Risk – Hazard

Identification – Hazard Analysis – Risk Planning and Control.

UNIT IV MONITORING AND CONTROL 9

Resource allocation - identifying and scheduling resources – publishing resource and cost schedule –

scheduling sequence - Creating Framework – Collecting The Data – Visualizing Progress – Cost

Monitoring – Earned Value – Priortizing Monitoring – Getting Project Back To Target – Change

Control – Managing Contracts – Introduction – Types Of Contract – Stages In Contract Placement –

Typical Terms Of A Contract – Contract Management – Acceptance.

UNIT V MANAGING PEOPLE AND ORGANIZING TEAMS 9

Introduction – Understanding Behavior – Organizational Behavior - Selecting The Right Person For

The Job – Instruction In The Best Methods – Motivation – The Oldman – Hackman Job

Characteristics Model – Working In Groups – Becoming A Team – Decision Making – Leadership –

Organizational Structures – Stress – Health And Safety – Case Studies.

Total: 45 hours

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TEXT BOOKS

1. Bob Hughes, Mikecotterell, “Software Project Management”, Fifth Edition,Tata McGraw Hill,

2010.

REFERENCES

1. Ramesh, Gopalaswamy, "Managing Global Projects", Tata McGraw Hill, 2006.

2. Royce, “Software Project Management”, Pearson Education, 2005.

3. Jalote, “Software Project Management in Practice”, Pearson Education, 2002.

4. Robert T. Futrell, Donald F. Shefer and Linda I. Shefer, “Quality Software Project

Management”, Pearson Education, 2006

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U15CS603R COMPILER DESIGN LABORATORY 0 0 4 2

COURSE OUTCOMES

At the end of the course, students will be able to,

Construct NFA and minimized DFA from a given regular expression using C program.

Use LEX and YACC tool to implement a lexical analyzer and parser for the grammar

Generate a code for a given intermediate code

LIST OF EXPERIMENTS

1. Construction of NFA.

2. Construction of minimized DFA from a given regular expression.

3. Use LEX tool to implement a lexical analyzer.

4. Use YACC and LEX to implement a parser for the grammar.

5. Implement a recursive descent parser for an expression grammar that

generates arithmetic expressions with digits, + and *.

6. Construction of operator precedence parse table.

7. Implementation of symbol table

8. Implementation of shift reduced parsing algorithms.

9. Construction of LR parsing table.

10. Generation of code for a given intermediate code.

11. Implementation of code optimization techniques.

Total: 60 hours

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U15CS604R INTERNET OF THINGS LABORATORY 0 0 4 2

COURSE OUTCOMES

At the end of the course, students will be able to

Design a simple Internet of Things (IoT) application using Arduino/Raspberry Pi, sensors and actuators

Deploy an IoT application using Arduino/Raspberry Pi and appropriate sensor and actuator

Build an IoT system using mobile app as a mini project

LIST OF EXPERIMENTS

1. Turn ON and OFF the LEDs.

2. Identify the objects using IR and PIR sensor.

3. Measure the moisture level of soil using soil moisture sensor.

4. Measure the distance between the ultrasonic sensor and the obstacle.

5. Identify the leakage of gas/smoke in the environment.

6. Measure the humidity and moisture value of the environment.

7. Control a LED using relay switch.

MINI PROJECT

1. Build an IoT system for the following suggested titles but not limited to:

2. Line follower robot

3. Smart weather monitoring system

4. Smart lighting system

5. Smart waste management system

6. Smart parking system

Total: 60 hours

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U15CS605R CREATIVE AND INNOVATIVE PROJECT 0 0 2 1

COURSE OUTCOMES

At the end of the course, students will be able to,

Identify and specify the pre-processing necessary to solve a problem

Suggest optimum solutions by comparing the different solutions from an algorithmic

perspective

Apply the result implications in any societal problem

INTERNALS

a. First Review

I. Block Diagram of the proposed solution for a societal / creative problem

II. New Contribution in terms of modifications to existing algorithm or suggestion of new

ones

III. Detailed Design of each module

IV. Evaluation Metrics

V. Test Cases

b. Second Review

I. Implementation - Justifying pros and Cons

II. Coding - highlighting what has been reused and what is being written

c. Third Review

I. Test Runs ii. Performance Evaluation based on Metrics iii. Project

Documentation

EXTERNALS

Presentation, Viva-Voce, Report submission

Total: 30 hours

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Sona College of Technology, Salem

(An Autonomous Institution)

Courses of Study for B.E/B.Tech. Semester VI under Regulations 2015R (CBCS)

Branch: Information Technology

Approved By

Chairperson, Information Technology BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal

Dr.J.Akilandeswari Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to:-

HOD/Information Technology, Sixth Semester BE IT Students and Staff, COE

S. No Course Code Course Title Lecture Tutorial Practical Credit

Theory

1 U15IT601R Data Mining 3 0 0 3

2 U15IT602R Principles of Compiler Design 3 0 0 3

3

U15IT909R Elective - Total Quality Management

3 0 0 3 U15IT913R Agile Software Development

U15IT914R Software Quality Assurance

4 U15IT918R Elective - Information Security 3 0 0 3

U15IT922R Machine Learning

5

U15CE1003R Open Elective - Energy Efficiency And Green Building

3

0

0

3 U15CE1004R Municipal Solid Waste Management

U15EE1006R Renewable Energy Systems

U15FT1001R Fundamentals Of Fashion Design

U15ME1002R Renewable Energy Sources

Practical

6 U15IT603R Python Programming Laboratory 1 0 4 3

7 U15IT604R Software Design and Testing Laboratory 1 0 4 3

8 U15IT605R Internet of Things Laboratory 1 0 2 2

9 U15IT606R Mini Project - II 0 0 2 1

10 U15GE601BR Soft Skills and Aptitude - IV 0 0 2 1

Total Credits 25

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U15IT601R DATA MINING 3 0 0 3

COURSE OUTCOMES

At the end of the course, the student will be able to

1. Apply the concepts of building a data warehouse and explore the various methods for implementing data warehouse

2. Explain the fundamental processes, concepts and techniques of data mining

3. Explain the concepts of association rule mining and classification and apply appropriate algorithm for the given data

4. Apply clustering algorithms to data sets

5. Investigate the different applications and trends of data mining.

UNIT I DATA WAREHOUSING 9

Data warehouse Overview: What is a data warehouse, A Multidimensional Model, Architecture, implementation, from

data warehouse to data mining.

Data cube technology: OLAP technology, attribute oriented induction.

UNIT II INTRODUCTION TO DATA MINING 9

Introduction – Data – Types of Data – Data Mining Functionalities – Kinds of Patterns – Classification of Data Mining

Systems – Data Mining Task Primitives – Integration of a Data Mining System with a Data Warehouse – Issues.

Data Preprocessing: Need to preprocess, data cleaning, data integration, data reduction, data transformation and

discretization, concept hierarchy generation.

UNIT III ASSOCIATION RULE MINING AND CLASSIFICATION 10

Mining Frequent Patterns, Associations and Correlations – Mining Methods – Mining Various Kinds of Association Rules

– Correlation Analysis – Constraint Based Association Mining Classification and Prediction - Basic Concepts - Decision

Tree Induction - Bayesian Classification – Rule Based Classification – Classification by Back propagation – Support

Vector Machines – Associative Classification - Lazy Learners – Prediction.

UNIT IV CLUSTERING 9

Cluster Analysis - Types of Data – Categorization of Major Clustering Methods– Partitioning Methods – Hierarchical

Methods - Density-Based Methods –Grid Based Methods – Model-Based Clustering Methods.

UNIT V APPLICATIONS AND TRENDS IN DATA MINING 8

Mining complex data types, other methodologies, Data Mining Applications, Social Impacts of data mining, Trends in

data mining,

Total: 45 hours

TEXT BOOK

1. Jiawei Han and Micheline Kamber, “Data Mining Concepts and Techniques”, Third Edition, Morgan Kaufmann,

2016.

REFERENCES

1. Alex Berson and Stephen J. Smith, “Data Warehousing, Data Mining & OLAP”, Tata Mc Graw Hill Edition,

Tenth Reprint 2007.

2. Pang-Ning Tan, Michael Steinbach and Vipin Kumar, “Introduction To Data Mining”, Pearson Education, 2007.

3. K.P. Soman, Shyam Diwakar and V. Ajay “, Insight into Data mining Theory and Practice”, Easter Economy

Edition, Prentice Hall of India, 2006.

4. G. K. Gupta, “Introduction to Data Mining with Case Studies”, Easter Economy Edition, Prentice Hall of India,

2006.

5. Soumendra Mohanty, “Data Warehousing Design, Development and Best Practices”, Tata McGraw Hill Edition,

2006.

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09.12.2019 Regulations-2015R Regulations-2014

U15IT602R PRINCIPLES OF COMPILER DESIGN 3 0 0 3

COURSE OUTCOMES

At the end of the course, the student will be able to

1. Describe the phases of compilation process, purpose and implementation approach of each phase

2. Build NFA and DFA using the formalisms and techniques including regular expressions, and LEX tool

3. Explain the concepts of context free grammar, different parsing techniques and YACC tool

4. Apply semantic analysis of expressions and design code generation schemes

5. Implement various parsing, conversion, optimization and code generation algorithms for the design of a compiler

UNIT I INTRODUCTION TO COMPILERS 9

Introduction: Compilers, Analysis of the Source Program, The Phases of a Compiler, Cousins of the Compiler, The

Grouping of Phases, Compiler-Construction Tools

UNIT II LEXICAL ANALYSIS 9

Lexical Analysis: Need and role of lexical analyzer, Lexical errors, Input Buffering, Specification of Tokens,

Recognition of Tokens, A Language for Specifying Lexical Analyzers, Finite Automata, From a Regular Expression

to an NFA

LEX: Design of a Lexical Analyzer Generator.

UNIT III SYNTAX ANALYSIS 9

Syntax Analysis: Need and role of the parser, Context Free Grammars

Top Down parsing: Introduction, Recursive Descent Parser, Predictive Parser, LL (1) Parser

Bottom-Up Parsing: Introduction, Shift Reduce Parser, LR Parser, LR (0) item, Construction of SLR Parsing table,

Canonical LR Parsing, LALR Parser

YACC: Design of a syntax analyzer for a sample language.

UNIT IV SYNTAX DIRECTED TRANSLATION 9

Syntax directed translation: Syntax-Directed Definitions, Construction of Syntax Trees, Bottom-Up Evaluation of

S-Attributed Definitions, L-Attributed Definitions, Bottom-Up Evaluation of Inherited Attributes

Intermediate Code Generation: Forms of intermediate code, Translation of Assignment, Boolean Expression and

Control statements, Back -Patching type systems

UNIT V CODE OPTIMIZATION AND CODE GENERATION 9

Code Optimization: Principal sources of Optimization, Directed Acyclic Graph, Optimization of basic blocks,

Global data flow analysis, Efficient data flow algorithms

Code Generation: Issues in design of a code generator, simple code generator algorithm

TOTAL: 45 hours

TEXT BOOK

1. Alfred V.Aho, Ravi Sethi and Jeffrey D.Ullman, "Compilers – Principles, Techniques and Tools", second

edition, Pearson Education, New Delhi, 2006.

REFERENCES

1. Dhamdhere D M, "Compiler Construction Principles and Practice", second edition, Macmillan India Ltd., New

Delhi, 2002.

2. Jean Paul Tremblay, Paul G Serenson, "The Theory and Practice of Compiler Writing", McGraw Hill, New

Delhi, 2001.

3. Dick Grone, Henri E Bal, Ceriel J H Jacobs and Koen G Langendoen, “Modern Compiler Design”, John

Wiley, New Delhi, 2000.

4. Raghavan V, “Principles of Compiler Design”, Tata Mc-Graw Hill Education Pvt. Ltd., New Delhi, 2009.

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09.12.2019 Regulations-2015R Regulations-2014

U15IT603R PYTHON PROGRAMMING LABORATORY 1 0 4 3

COURSE OUTCOMES

At the end of the course, the student will be able to

1. Develop python applications for real world problems.

2. Create applications using files and modules.

3. Develop applications using Django framework.

UNIT I INTRODUCTION TO PYTHON 5

Introduction: Features - Installing - Running, Syntax and Style: Variable Assignment - Memory Management, Python

Objects: Standard Types, Numbers, Sequences: Strings - Lists - Tuples, Dictionaries

UNIT II PYTHON FILES AND MODULE 4

Conditions and Loops. Files and Input/Output: File Objects and Built in functions - Functions

UNIT III INTRODUCTION TO DJANGO 6

Overview - Django Basics - Templates and static media - Models and Databases.

REFERENCES

1. Wesley J. Chun, “Core Python Programming”, Pearson, 2nd

Edition, 2006.

2. Mark Lutz, “Learning Python”, O’Reilly Media, 4th

Edition, 2003.

3. Allen Downey, “Think Python: How to Think Like a Computer Scientist”, Green tea Press, 2nd

Edition.

4. Leif Azzopardi and David Maxwell, “ Tango With Django: A beginner’s Guide to Web Development With

Python / Django” , 2nd

Edition, 2016.

LIST OF EXPERIMENTS

1. Develop programs to understand the control structures of python

2. Develop programs to learn different types of structures (list, dictionary, tuples) in python

3. Develop programs to learn concept of functions scoping, recursion and list mutability.

4. Develop programs for data structure algorithms using python – searching, sorting and hash tables.

5. Develop programs using Python Module

6. Develop programs to read and Write a text file

7. Learn to plot different types of graphs using PyPlot.

8. Develop programs using Django templates and media

9. Develop programs using Django Models

10. Develop programs using Django Database

Total: 75 hours

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U15IT604R SOFTWARE DESIGN AND TESTING LABORATORY 1 0 4 3

At the end of the course, the student will be able to

1. Analyse the problem and gather requirements there by design UML diagrams.

2. Develop software for web applications.

3. Test the applications using automated testing tools.

UNIT I INTRODUCTION 4

Fundamentals of Software Testing –Testing Levels - Testing Types – Advantages of Test Automation in

comparison to Manual Testing – Automation ROI - Automation Test Process

UNIT II TEST PYRAMID 4

The Test Pyramid - Concepts of unit testing – Test-driven development (TDD) - GUI tests – Behaviour-driven

development (BDD) – Smoke tests and regression tests – Service or Integration tests – Unit / GUI / Service or

integration tests in the process of continuous integration / delivery / deployment – Tools, Framework and

libraries available in the market

UNIT III AUTOMATION TESTING AND SELENIUM 7

Selenium: Basic Concepts of Java and first Web driver program, web driver Interface explanation and Invoking

Browser, Basic Methods of Web driver, How to run tests in Google Chrome, How to run tests in Internet

Explorer, Locator Techniques& Tools used, Preview Browser Add-ons overview to identify elements, Preview

Installing Firebug & Firepath Add-ons, Locator Techniques : Xpath identification using Firepath, Name ,ID,

ClassName, LinkText,-Handling links- Using Chropath plugin similar as firepath for firefox, handling

duplication of elements in the application.

Lecture Hours: 15 hours

EXPERIMENTS

Prepare the following documents for the projects listed below and develop the application using software

engineering methodology.

1. Program Analysis and Project Planning - Thorough study of the problem – Identify project scope,

Objectives, Infrastructure.

2. Software Requirement Analysis - Describe the individual Phases / Modules of the project, Identify

deliverables.

3. Data Modeling - Use work products – Data dictionary, Use case diagrams and activity diagrams, build

and test class diagrams, Sequence diagrams and add interface to class diagrams.

4. Software Development and Debugging

5. Software Testing and Debugging- Develop a test plan and test case -Perform unit, integration, system

and acceptance testing on application software- Track bugs and defects- Use automated testing tools:

LoadRunner, WinRunner, Selenium and Neoload test, Junit.

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SUGGESTED LIST OF APPLICATIONS

1. GST calculator

2. Aadhar details verification system

3. Pizza Ordering Systems

4. Online Ticket Reservation System

5. Course Registration System

6. Expert System for medical issues

7. ATM Systems

8. Stock Maintenance

9. E-Mail Client System

10. Time table Generation System

Total: 75 hours

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U15IT605R INTERNET OF THINGS LABORATORY 1 0 2 2

COURSE OUTCOMES

At the end of the course, the student will be able to

1. Interface various sensors with Arduino and Raspberry pi boards.

2. Implement the control applications using Arduino programming

3. Experiment the different IoT applications with Raspberry pi using Python Programming.

UNIT I SENSOR AND ACTUATORS 3

Sensors –sensor types: Light, temperature, Force and sound- Actuators-Actuator types

UNIT II OVERVIEW OF IOT 3

An example of IoT Implementation- IoT Service Oriented Architecture- IoT Categories- IoT and Associated

Technologies- IoT challenges

UNIT III INTRODUCTION TO ARDUINO PROGRAMMING 3

Features of Arduino- Types of Arduino Board-Board Details-Arduino IDE Overview-Example programs

UNIT IV INTRODUCTION TO RASPBERRY PI 3

Raspberry Pi introduction - Basic Architecture -Raspberry Pi pin configuration –Basic set up for Raspberry Pi

UNIT V INTRODUCTION TO PYTHON PROGRAMMING 3

Python IDE- Data-types in Python- Functions in Python, Implementation of IoT with Raspberry Pi using Python TEXT BOOK

1. Vijay Madisetti and Arshdeep Bahga, “Internet of Things (A Hands­on­Approach)”, 1st Edition,

VPT, 2014.

REFERENCES

1. Francis daCosta, “Rethinking the Internet of Things: A Scalable Approach to Connecting Everything”, 1st

Edition, Apress Publications, 2013.

2. Dr.K.V.K.K.Prasad, “Embedded Real Time Systems: Concepts, Design and Programming”, DreamTech

Publication, 2003.

3. Adrian McEwen, Hakim Cassimally, “Designing the Internet of Things”, Wiley Publications, 2012.

4. Introduction to IoT NPTEL video lectures by Dr. Sudip Misra, IIT Kharagpur 2017.

List of Experiments

1. Installation of Arduino IDE and Blink LED

2. Creating different LED Patterns using Loops and functions

3. Interfacing Arduino Nano with Joystick

4. Control the brightness of an LED by using PWM

5. Control servo motor using Joystick

6. Control LED, Buzzer and Relay from smart phone using Bluetooth Module.

7. Interface DHT 11 sensor with Arduino Nano and upload the humidity and temperature on the cloud.

8. Familiarization of Raspberry pi by blink LED program

9. Interface PIR sensor with Raspberry pi for motion detection.

10. Control the stepper motor using Raspberry pi based on specific input

11. Measure the humidity and temperature using DHT sensor and display the data readings on the LCD screen.

12. Build a secret code based security system using Raspberry pi

Total: 45 hours

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U15IT909R TOTAL QUALITY MANAGEMENT 3 0 0 3

COURSE OUTCOMES At the end of the course, the student will be able to

1. Understand the Total Quality Management concepts

2. Understand the Total Quality Management principles

3. Understand the statistical approach for quality control.

4. Familiarize with various tools available to achieve Total Quality Management.

5. Create awareness about the ISO and QS certification process and its need for the industries.

UNIT I INTRODUCTION 9

Definition of Quality, Dimensions of Quality, Quality Planning, Quality costs - Analysis Techniques for Quality Costs,

Basic concepts of Total Quality Management, Historical Review, Principles of TQM, Leadership – Concepts, Role of

Senior Management, Quality Council, Quality Statements, Strategic Planning, Deming Philosophy, Barriers to TQM

Implementation.

UNIT II TQM PRINCIPLES 9

Customer satisfaction – Customer Perception of Quality, Customer Complaints, Service Quality, Customer Retention,

Employee Involvement – Motivation, Empowerment, Teams, Recognition and Reward, Performance Appraisal, Benefits,

Continuous Process Improvement – Juran Trilogy, PDSA Cycle, 5S, Kaizen, Supplier Partnership – Partnering, sourcing,

Supplier Selection, Supplier Rating, Relationship Development, Performance Measures – Basic Concepts, Strategy,

Performance Measure..

UNIT III STATISTICAL PROCESS CONTROL 9

The seven tools of quality, Statistical Fundamentals – Measures of central Tendency and Dispersion, Population and

Sample, Normal Curve, Control Charts for variables and attributes, Process capability, Concept of six sigma, New seven

Management tools.

UNIT IV TQM TOOLS 9

Benchmarking – Reasons to Benchmark, Benchmarking Process, Quality Function Deployment (QFD) – House of

Quality, QFD Process, Benefits, Taguchi Quality Loss Function, Total Productive Maintenance (TPM) – Concept,

Improvement Needs, FMEA – Stages of FMEA.

UNIT V QUALITY SYSTEMS 9

Need for ISO 9000 and Other Quality Systems, ISO 9000:2000 Quality System – Elements, Implementation of Quality

System, Documentation, Quality Auditing, TS 16949, ISO 14000 – Concept, Requirements and Benefits.

Total: 45 hours

TEXT BOOK

1. Dale H.Besterfiled, et al., “Total Quality Management”, Pearson Education, Inc. 2003. (Indian reprint 2004).

ISBN 81-297-0260-6.

REFERENCES

1. James R.Evans & William M.Lidsay, “The Management and Control of Quality”, (5th Edition), South-Western

(Thomson Learning), 2002 (ISBN 0-324-06680-5).

2. Feigenbaum.A.V. “Total Quality Management”, McGraw Hill, 2002.

3. Oakland.J.S. “Total Quality Management”, Butterworth – Hcinemann Ltd., Oxford.2005

4. Narayana V. and Sreenivasan, N.S. “Quality Management – Concepts and Tasks”, New Age International 2003.

5. Zeiri. “Total Quality Management for Engineers”, Wood Head Publishers, 2005.

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U15IT913R AGILE SOFTWARE DEVELOPMENT 3 0 0 3

COURSE OUTCOMES

At the end of the course, the student will be able to,

1. Explain the genesis of Agile and driving forces for choosing Agile techniques.

2. Comprehend the Agile Scrum framework and development practices.

3. Assess the software product using Agile testing methodologies and perform testing activities within

an agile project.

4. Apply software design principles and refactoring techniques to achieve agility.

5. Evaluate the agile approach impact on cutting-edge technologies and also realize the business value for

adopting agile software development. UNIT I FUNDAMENTALS OF AGILE 9

The Genesis of Agile, Introduction and background, Agile Manifesto and Principles, Extreme Programming, Feature

Driven development, Lean Software Development, Adaptive Software development, Dynamic System Development

Method, Crystal, Agile Modeling, Agile Unified Process, Kanban, Agile project management, Continuous Integration,

Pair Programming, Simple Design.

UNIT II AGILE SCRUM FRAMEWORK 9 Introduction to Scrum, Project phases, Agile Estimation, Planning game in XP, Product backlog, Sprint backlog, Iteration

planning, User story definition, Characteristics and content of user stories, Acceptance tests and Verifying stories, Project

velocity, Burn down chart, Burn up chart, Sprint planning and retrospective, Daily scrum, Scrum roles – Product Owner,

Scrum Master, Scrum Team.

UNIT III AGILE TESTING 9 The Agile lifecycle and its impact on testing, Agile Testing Methodologies – Test Driven development, Acceptance Test

Driven development, Behavior Driven development, Role of Tester in Agile Team, Tracking Testing activities, Agile

Testing in Scrum, Agile Testing in Kanban, Agile Testing Techniques- Exploratory testing, Risk based testing, Regression

tests, Agile Testing Work products.

UNIT IV AGILE SOFTWARE DESIGN AND DEVELOPMENT 10 Agile design practices, Design Principles - Single Responsibility Principle, Open Closed Principle, Liskov

Substitution Principle, Interface Segregation Principles and Dependency Inversion Principle, Need and significance of

Refactoring, Refactoring Techniques.

UNIT V INDUSTRY TRENDS 8 Agile Application Lifecycle Management (ALM), Roles in an Agile project, Agile applicability, Agile in Distributed

teams, Business benefits, Challenges in Agile, Risks and Mitigation, Agile rapid development technologies.

Total : 45 hours

REFERENCES

1. Ken Schwaber, Mike Beedle, “Agile Software Development with Scrum”, Pearson, 2014.

2. Robert C. Martin, “Agile Software Development, Principles, Patterns and Practices”Pearson, 2003.

3. Lisa Crispin, Janet Gregory,” Agile Testing: A Practical Guide for Testers and Agile Teams” Addison Wesley,

2008.

4. Alistair Cockburn,” Agile Software Development: The Cooperative Game”Addison Wesley, Second Edition,

2006.

5. Mike Cohn,” User Stories Applied: For Agile Software” Addison Wesley, 2004.

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U15IT914R SOFTWARE QUALITY ASSURANCE 3 0 0 3

COURSE OUTCOMES

At the end of the course the students will be able to:

1. Explain the factors and plans required for software development.

2. Implement the testing policies and tools used for software quality.

3. Describe the configuration procedure in developing software document.

4. Implement the software metrics to assess the cost of software quality.

5. Explain the benefits of using SQA standards and responsibilities of management

UNIT I INTRODUCTION TO SOFTWARE QUALITY & ARCHITECTURE 9

Need for Software quality – Quality challenges – Software quality assurance (SQA) – Definition and objectives –

Software quality factors- McCall‟s quality model – SQA system and architecture – Software Project life cycle

Components – Pre project quality components – Development and quality plans.

UNIT II SQA COMPONENTS AND PROJECT LIFE CYCLE 9

Software Development methodologies – Quality assurance activities in the development process- Verification &

Validation – Reviews – Software Testing – Software Testing implementations – Quality of software maintenance – Pre-

Maintenance of software quality components – Quality assurance tools – CASE tools for software quality – Software

maintenance quality – Project Management.

UNIT III SOFTWARE QUALITY INFRASTRUCTURE 9

Procedures and work instructions – Templates – Checklists – 3S developmenting – Staff training and certification

Corrective and preventive actions – Configuration management – Software change control – Configuration management

audit -Documentation control – Storage and retrieval.

UNIT IV SOFTWARE QUALITY MANAGEMENT & METRICS 9

Project process control – Computerized tools – Software quality metrics – Objectives of quality measurement – Process

metrics – Product metrics – Implementation – Limitations of software metrics – Cost of software quality – Classical

quality cost model – Extended model – Application of Cost model.

UNIT V STANDARDS, CERTIFICATIONS & ASSESSMENTS 9 Quality

management standards – ISO 9001 and ISO 9000-3 – capability Maturity Models – CMM and CMMI assessment

methodologies – Bootstrap methodology – SPICE Project – SQA project process standards – IEEE st 1012 & 1028 –

Organization of Quality Assurance – Department management responsibilities – Project management responsibilities

Total: 45 hours

.TEXT BOOK:

1. Daniel Galin, “Software Quality Assurance”, Pearson Publication, 2009.

REFERENCES:

1. Alan C. Gillies, “Software Quality: Theory and Management”, International Thomson Computer Press, 1997.

2. Mordechai Ben-Menachem “Software Quality: Producing Practical Consistent Software”, International

Thompson Computer Press, 1997.

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U15IT918R INFORMATION SECURITY 3 0 0 3

COURSE OUTCOMES

At the end of the course, the student will be able to

1. Explain the essential fundamentals of information security

2. Explain and apply the Laws and code of Ethics in Information Security

3. Evaluate vulnerability of an information system and establish a plan for risk management

4. Describe the access control mechanism used for user authentication and authorization

5. Maintain security infrastructure

UNIT I INTRODUCTION 9

An overview of Information Security, Critical Characteristics of Information, NSTISSC Security Model, Components of

an Information System, Securing the Components, Balancing Security and Access, The SDLC, The Security SDLC.

UNIT II SECURITY INVESTIGATION 9

Need for Security - Business Needs, Threats, and Attacks. Legal, Ethical and Professional Issues - Law and Ethics in

Information Security, International Laws and Legal Bodies, Ethics and Information Security.

UNIT III RISK MANAGEMENT AND SECURITY POLICY AND STANDARDS 9

Risk Management: Risk Identification, Risk Assessment, and Risk Control Strategies. Information Security Policy,

Standards and Practices, ISO 17799/BS 7799, NIST Models, VISA International Security Model.

UNIT IV SECURITY TECHNOLOGY 9

Access Control, Firewalls, Protecting Remote Connections, Intrusion Detection and Prevention Systems, Scanning and

Analysis Tools.

UNIT V IMPLEMENTING INFORMATION SECURITY AND SECURITY MAINTENANCE

9

Information Security Project Management, Technical and non-technical Aspects of Implementation, Security

Management Maintenance Models, Digital Forensics.

Total: 45 hours

TEXT BOOK

1. Michael E Whitman and Herbert J Mattord, “Principles of Information Security”, Vikas Publishing House, New

Delhi, 2003.

REFERENCES

1. Micki Krause, Harold F. Tipton, “Handbook of Information Security Management”, Vol 1-3, CRC Press LLC,

2004.

2. Stuart Mc Clure, Joel Scrambray, George Kurtz, “Hacking Exposed”, Tata McGraw-Hill, 2003.

3. Matt Bishop, “Computer Security Art and Science”, Pearson/PHI, 2002.

4. Charles P.Pfleeger, Shari Lawrence Pfleeger, ”Security in computing”, 4th

Edition, Pearson Publication, 2012.

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U15IT922R MACHINE LEARNING 3 0 0 3

COURSE OUTCOMES

At the end of the course, the student will be able to

1. Explain the concepts of different types of learning and apply linear regression

2. Summarize the concepts of logistic regression and implement the same with python

3. Explain and apply the concepts of Neural networks and support vector machines

4. Evaluate the hypothesis based on factors like bias and variance

5. Explain the concepts of clustering, dimensionality reduction and anomaly detection.

UNIT I INTRODUCTION AND LINEAR REGRESSION 9

What is machine learning? – Supervised Learning – unsupervised learning – Linear Regression – cost function – gradient

descent algorithm – normal equation – implementation - Gradient descent for multiple variables – feature scaling –

learning rate – polynomial regression – normal equation – implementation

UNIT II LOGISTIC REGRESSION 9

Hypothesis representation – decision boundary – nonlinear decision boundaries – cost function – gradient descent –

advanced optimizations – multi class classification problems – python implementation – Regularization - Problem of

overfitting – cost function optimization for regularization – regularized linear regression – regularization with normal

equation - regularized logistic regression – python implementation

UNIT III NEURAL NETWORKS AND SUPPORT VECTOR MACHINES 9

Overview and summary – neurons and brain – model representation – artificial neural networks representation – example

– multiclass classification – cost function – back propagation algorithm – gradient checking – random initialization –

implementation – Support vector machines – optimization objective – cost function – large margin intuition – decision

boundary – kernels – adapting to nonlinear classifiers – implementation

UNIT IV ADVICE FOR APPLYING MACHINE LEARNING 9

Debugging a learning algorithm – evaluating a hypothesis – model selection and training, validation test sets – bias Vs

variance – regularization and bias/variance – learning curves machine learning system design

UNIT V OTHER TOPICS 9

Unsupervised learning – k-means algorithm – optimization objective – choosing number of clusters - Dimensionality

reduction – principle component analysis - Anomaly detection – algorithm – developing and evaluating the algorithm –

anomaly detection Vs supervised algorithm -Case study – recommender system – collaborative filtering - Large scale

machine learning – online learning – map reduce and parallelism.

Total: 45 hours

REFERENCES

1. Stanford's machine learning course presented by Professor Andrew Ng – online resource -

http://www.holehouse.org/mlclass/

2. James, G., Witten, D., Hastie, T., Tibshirani, R, “An Introduction to Statistical Learning with Applications in R”,

Springer, 2013.

3. Tom M. Mitchell, “Machine Learning”, 1st edition, McGraw Hill Education, 2017.

4. Ethem Alpaydın, “Introduction to Machine Learning”, The MIT Press, 2nd edition, 2013.

5. Christopher M. Bishop, “Pattern Recognition and Machine Learning”, Springer, 2007.

6. Sebastianraschka, “Python Machine Learning”, Packt Publishing Ltd., 2017.

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Sona College of Technology, Salem

(An Autonomous Institution)

Courses of Study for B.E/B.Tech. Semester VI under Regulations 2015R (CBCS)

Branch: Fashion Technology

Approved By

Chairman, Fashion Technology BoS Member Secretary, Academic Council Chairperson, Academic Council & Principal

Dr.D.Raja Dr.R.Shivakumar Dr.S.R.R.Senthil Kumar

Copy to: -

HOD/Fashion Technology, Sixth Semester BE FT Students and Staff, COE

S. No Course Code Course Title Lecture Tutorial Practical Credit

Theory

1 U15GE602BR Principles of Management 3 0 0 3

2 U15FT601R Textile Testing and Quality Assurance in Apparel Production 3 0 0 3

3 U15FT602R Apparel Merchandising and Marketing 3 0 0 3

4 U15FT603R Industrial Engineering in Garment Production 3 0 0 3

5 U15FT906R Elective - Lean Manufacture in Apparel Industry 3 0 0 3

U15FT907R Elective - Sourcing and Sampling

6 U15CE1002R Open Elective - Disaster Management

3 0 0 3

U15CE1003R Energy Efficiency and Green Building

U15CE1004R Municipal Solid Waste Management

U15CS1002R Cloud Computing

U15CS1003R Internet of Things

U15CS1004R Mobile Application Development

U15EE1006R Renewable Energy Systems

U15IT1003R Problem Solving Techniques Using Java Programming

U15ME1002R Renewable Energy Sources

U15ME1004R Industrial Safety

U15ME1005R Maintenance Engineering

Practical

7 U15FT604R Textile Testing and Quality Control Laboratory 0 0 2 1

8 U15FT605R Computer- Aided Garment Design Laboratory 0 0 4 2

9 U15GE601BR Soft Skills and Aptitude - IV 0 0 2 1

Total Credits 22

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09.12.2019 Regulations-2015R Regulations-2014

U15GE602R PRINCIPLES OF MANAGEMENT 3 0 0 3

COURSE OUTCOMES

At the end of the study of this course the students will be able to,

1. Explain the fundamental concepts and principles of management, including the basic roles, skills, and

functions of management along with the knowledge of historical development of management process

2. Explain the role of planning and understand the process of planning which includes setting of objectives,

strategies, policies and plans and be familiar with the steps in the forecasting and decision-making process

3. Outline the importance and different forms of organising function, explain different organisational charts

stating its authority delegation; Explain the function of staffing which involves managing organization

structure through proper and effective selection, appraisal and development of the personnel to fill the roles

assigned to the employers/workforce

4. Define leadership and identify traits of effective leaders and describe the behaviours that effective leaders

demonstrate; State the need for motivation and the types and theories of motivation; Define communication

and understand the communication process and list the barriers to effective communication

5. Explain the process and importance of the controlling function and the various organisational control

techniques; Provide an overview of the global business management practices and issues

UNIT- I Management Concept and Historical Development 9

Nature and Functions of Management: Definition and importance of Management, Management as a Science

or an Art, Management and Administration, Levels of management, Functions of Management.

Development of Management Thought: Early Classical Approaches, Neo-Classical approaches, Modern

approaches, Contribution of F. W. Taylor and Henry Fayol, Basic forms of business ownership.

UNIT - II Planning and Decision Making 9

Foundations of Planning: Importance of Planning, Steps involved in Planning, Types of plans.

Objectives, strategies and planning: Characteristics and types of objectives, Process of setting Objectives,

Strategic planning, SWOT analysis, Significance and types of policies, Steps in policy formulation.

Managing by Objectives: Elements of MBO system, Advantages and limitations of MBO.

Forecasting and Decision Making: Characteristic of a good forecast, Classification of forecasting techniques,

Problem solving and decision making, Types of decision making, Certainty, Risk, Uncertainty and ambiguity in

decision making.

Unit - III Organising and Staffing 9

Fundamentals of Organising: Nature and importance of organisation, Steps in organising, Forms of organisation –Line, line and staff, Functional, Group organisations.

Organisation Structure: Formal and informal organizations, Organization Chart – Types, Benefits and Pitfall,

Departmentation by difference strategies.

Authority Delegation and De-Centralization: Elements of delegation, Delegation process, Centralisation,

Decentralisation, Formalisation.

Staffing: Manpower planning, Employee recruitment, Selection, Training, Performance appraisal, Human

Resource Development (HRD) – principles, framework, challenges and benefits.

Unit - IV Leadership, Motivation and Communication 9

Leadership styles and theories: Characteristics and functions of leadership, Types of leadership, Leadership

styles, Theories, roles of leader.

Motivation: Nature and importance of motivation, Types of motivation, Motivational theories.

Communication: Importance and characteristics, Formal and informal communication, Forms of

communication process, Barriers to effective communication, Overcoming the barriers.

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Unit - V Controlling and Globalisation 9

Controlling: Nature and need for control, Steps in control process, Organisational control techniques –

Budgetary control techniques, Management auditing, Information and financial analysis, Break even analysis,

Requirements for effective control system.

The Global Environment: Globalisation and Liberalisation, Forms of International business, Benefits of

globalisation, MNC, Global theories.

TOTAL: 45 hours

TEXT BOOKS

1. Harold Kooritz and Heinz Weihrich, Essentials of Management, Tata McGraw-Hill, New Delhi,1998.

2. Joseph L. Massie, Essentials of Management, Prentice Hall of India, Pearson Fourth Edition, New

Delhi, 2003.

REFERENCES

1. Tripathy P. C. and Reddy P.N., Principles of Management, Tata McGraw-Hill, New Delhi, 1999.

2. Decenzo David and Robbins Stephen A. , Personnel and Human Resource Management, Prentice

Hall of India, New Delhi, 1996.

3. JAF Stomer, Freeman R. E and Daniel R Gilbert, Management, Pearson Education, Sixth Edition, New

Delhi, 2004.

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U15FT601R TEXTILE TESTING AND QUALITY ASSURANCE IN

APPAREL PRODUCTION

3 0 0 3

COURSE OBJECTIVE

To impart knowledge about the sampling techniques, different methods of testing procedure for fibre, yarn and

fabric and apparel., quality, inspection, quality assurance, control forms, production flow charts, quality control

aspects for fabrics and garment manufacturing processes, the standards and tolerances used in the garment

industries.

COURSE OUTCOMES

At the end of the study of the course the student should be able to,

1. Elucidate the various principles and methods are used for fibre and yarn properties testing.

2. Describe the different methods and procedure is used for fabric testing properties.

3. Discuss the basic terms and definition of apparel testing and methods of evaluation.

4. Discuss the basic terms and definition and procedures of Quality, Inspection Quality Assurance and Control

forms.

5. Elaborate on the quality control for Fabrics, QC in Garment Manufacturing Processes, Quality Standards

and Tolerances.

UNIT I Sampling Techniques, Fibre and Yarn Testing 9

Sampling Techniques: Definitions of random and biased samples, sampling techniques for fibre, yarns and

fabrics.

Fibre Testing: Testing of cotton using the rapid fibre testing methods, high Volume Instrument (HVI) and

AFIS.

Yarn count and Strength: Definitions of count, yarn numbering system, determination of yarn count using

wrap reel. Count Strength Product and single yarn strength.

Yarn Twist: Definitions of twist, determination of twist of single and ply yarn.

Yarn Evenness and Hairiness: Yarn appearance board winder. Classification of variations in yarn, methods of

measuring yarn evenness and hairiness, Uster evenness tester.

Unit II Fabric Testing 9

Fabric Strength Testing: Fabric tensile strength tester, tearing strength tester, hydraulic bursting strength

tester.

Fabric Performance Testing: Martindale abrasion resistance tester. Fabric pilling: ICI pillbox tester.

Fabric Drape and Stiffness: Definition of drape and stiffness, drape meter, Shirley stiffness tester, fabric

crease resistance and crease recovery tester.

Fabric Permeability: Terms in air permeability and water permeability tester.

UNIT III Apparel Testing 8

Seam Strength: Definition of seam strength, seam puckering and evaluation of interlining quality. Standards

for above testing methods.

Apparel testing: Dimensional stability, durable press evaluation, Snap / button pull strength testing.

UNIT IV Quality, Inspection, Quality Assurance and Control forms 9

Quality: Introduction, definition, control of quality and its necessity.

Inspection: Importance of inspection, types of inspection: raw material inspection, in-process inspection, final

inspection, 100% inspection, sampling inspection, comparison of 100% and sampling inspections. AQL

Standards, basic calculations, self-inspection method.

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Quality assurance: Definition, differences between quality assurance and inspection, inspection agencies.

Control forms.

UNIT V Quality Control and Quality Standards 10

QC for fabrics: Quality control for fabrics, types of defects in fabrics, major, minor and critical faults, fabric

inspection system, 4 point and 10 point system.

QC in Garment Manufacturing Processes: Quality control in pattern making, grading, marking and marker

efficiency and quality control in stitching. Major, minor and critical faults, quality control of trims accessories.

Quality Standards and Tolerances: Quality standards and tolerances and for fabrics, spreading, cutting,

stitching in garment industry, tolerances and quality standards for finished garments. Quality assurance system

and standards for packing and packed goods.

TOTAL: 45 hours

TEXT BOOKS

1. Angappan P and R.Gopalakrishnan , “Textile Testing”-S.S.M.I.T.T Co-op stores Ltd.,2007.

2. Koushik C.V. and R. Chandrasekaran, “Textile Testing”-NCUTE publication, New Delhi, 2004.

3. Jacob Solinger, “Apparel Manufacturing Handbook”, Prentice Hall, New Jersey, 1993.

REFERENCES

1. J. E. Booth, “Principles of Textile Testing”, CBS Publishers and Distributors, New Delhi, 1996.

2. B. P. Saville, “Physical Testing of Textiles”, CRC Woodhead Publishing, New Delhi 1999.

3. V.K. Kothari, “Quality Control and Testing Management”, IAFL Publications, New Delhi, 1999.

4. Samuel Eilon, “Production Planning and Control”, Macmillan, New York, 1962.

5. Grover E. G. and Hamby D. S., “Hand Book of Textile Testing and Quality Control”, Wiley Eastern Pvt.

Ltd., New Delhi, 1969.

6. Pradip V. Mehta, “An Introduction to Quality Control for the Apparel Industry”, Dekker, 1992.

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U15FT602R APPAREL MERCHANDISING AND MARKETING 3 0 0 3

COURSE OBJECTIVE

To impart knowledge on marketing, fashion merchandising, sourcing, pricing and types of document

preparation.

COURSE OUTCOMES

At the end of the study of this course the students will be able to,

1. Describe the various types of market and advertising techniques involved in merchandising.

2. Discuss the types and functions of merchandising.

3. Explain the principles and techniques of fashion merchandising.

4. Discuss the technology involved in sourcing and material management systems.

5. Describe the various types of documents used for merchandising and export.

UNIT I Marketing 9

Apparel marketing: Definition, scope, functions and strategies of marketing.

Market Research: International market, retail and wholesale market and domestic market.

Advertising: Purpose, methods, types of advertising media, sales promotion methods.

UNIT II Merchandising 9

Apparel Merchandising: Definition, functions of merchandising division, roles and responsibilities of

merchandiser.

Types of Merchandising: Principles and techniques of apparel merchandising, retail merchandising, visual

merchandising, interfacing merchandising with production.

UNIT III Fashion Merchandising 9

Fashion Merchandising: Principles and techniques of fashion merchandising, components of fashion, leaders

of fashion, foreign fashion markets, different types of fashion shows, fashion retailing trends.

UNIT IV Pricing and Sourcing 9

Pricing: Pricing theory, factors affecting price structure in apparel.

Sourcing: Definition, need and important factors in sourcing, methods of sourcing raw materials, sourcing of

accessories, manufacturing resource planning, JIT technology.

UNIT V Time Management 9

Time management in merchandising, production scheduling, route card format, accessories follow-up, practical

check points, computer applications in marketing and merchandising.

TOTAL: 45 hours

TEXT BOOKS

1. Moore Evelyn C., “Path for Merchandising- A Step by Step Approach”, Thames and Hudson Ltd.,

London, 2001.

1. Vijay Barotia, “Marketing Management”, Mangal Deep Publication, New Delhi, 2001.

REFERENCES

1. Jarnow J. and Dickerson K. G., “Inside the Fashion Business”, Prentice Hall, New Delhi, 1997.

2. Laine Stone and Jean Samples, “Fashion Merchandising”, McGraw Hill Books, Singapore, 1985.

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U15FT603R INDUSTRIAL ENGINEERING IN GARMENT

PRODUCTION

3 0 0 3

COURSE OBJECTIVE To impart knowledge about the concept of industrial engineering, method study, the importance of the process

of work measurement, plant layout, planning tools and material handling systems related to the apparel industry.

COURSE OUTCOMES

At the end of the study of this course the students will be able to,

1. Explain the importance of productivity and discuss the role of industrial engineer in the garment industry.

2. Discuss the various procedure and techniques involved in method study.

3. Explain the objectives and procedure to measure work content in the garment industry and also discuss its

importance.

4. Explain the importance of plant layout and analyse the lean manufacturing technology in the garment

industry.

5. Discuss the various planning, control tools and material handling systems used in garment industries.

UNIT I Introduction 9

Productivity: Production, Productivity, types of productivity, productivity measures, factors affecting

productivity in garment industry, measurement of line efficiency.

Industrial engineering: Definition, Benefits, Roles and responsibilities of industrial engineer in apparel

industry.

UNIT II Method Study 9

Method study: Definition, Objectives, Basic procedure, Value Added and Non Value Added activity analysis.

Process Chart: Flow process chart, Flow diagram, multiple activity chart, Travel chart, String diagram.

Motion Economy: Principles of motion economy, classification of movements, micro-motion study,

ergonomics.

UNIT III Work Measurement 9

Work Measurement: Definition, Objective, Techniques

Time study: Definition, steps in making time study, breaking the job into elements, stop watch procedure, pre-

determined motion time study.

Standard Time: Rating factor, allowances, mechanism of arriving SAM, SMV and SAM examples for

regular garments.

UNIT IV Plant Layout 9

Layout: Objectives, Steps in planning layout, Types of layout, importance of Plant location, Work area

planning, quick changeover.

Lean Manufacturing: Definition, objective, concepts and principle, SMED technique.

UNIT V Planning and Control 9

Planning: Cost per minute, learning curve, preparation of operation bulletin, development of skill matrix,

thread consumption, estimation of on-standard and off-standard time, abnormality management.

Line Balancing: WIP, factors influence on line balancing techniques, pitch diagram analysis.

Material Handling: Definition, objective, classification of material handling equipment in apparel industries.

TOTAL: 45 hours

TEXTBOOKS

1. Khan M.I “Industrial Engineering”, New Age International, 2004.

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REFERENCES

1. Cooklin Gerry, “Introduction to Clothing Manufacture”, Blackwell Science Ltd., 1995.

2. Johnson Maurice “Introduction of Work Study”, International labour Organization, Geneva, 1995.

3. Solinger Jacob “Apparel Manufacturing Hand Book”, Reinhold Co, 1998.

4. Ralph M Barnes, “Motion and Time Study Design and Management of Work”, Seventh Edition, John

Wiley and sons, New York 1980.

5. Khanna O.P “Industrial Engineering and Management” DanpatRai and Sons, New Delhi, 1987.

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U15FT604R TEXTILE TESTING AND QUALITY CONTROL

LABORATORY

0 0 2 1

COURSE OBJECTIVE

To impart practical knowledge on determination of various yarn and fabric properties.

COURSE OUTCOMES

At the end of study of the course students able to,

1. Prepare the test specimen and determine the various yarn properties.

2. Prepare the test specimen and determine the various fabric properties.

3. Analyse the properties of given fabric sample.

LIST OF EXPERIMENTS

1. Determination of yarn count, lea strength and CSP. (1 session)

2. Determination of single yarn strength. (1 session)

3. Determination of yarn evenness grades using yarn-appearance boards. (1/2 session)

4. Determination of single yarn and double yarn twist. (1/2 session)

5. Determination of fabric tensile strength, seam strength and seam slippage properties. (1 session)

6. Determination of fabric abrasion resistance by using Martindale abrasion tester. (1 session)

7. Determination of fabric bursting strength by using hydraulic bursting tester. (1 session)

8. Determination of fabric tearing strength by using Elmendorf tearing tester. (1 session)

9. Determination of fabric stiffness and crease recovery angle. (1 session)

10. Determination of pilling tendency of fabric by using ICI pill box tester. (1 session)

11. Determination of drape coefficient of fabric by using drape meter. (1 session)

12. Determination of course length of knitted fabric by using course length tester. (1 session)

13. Determination of air permeability of fabric testing. (1 session)

14. Determination of wickabiliy of fabric. (1/2 session)

15. Analysis of Seam puckers. (1/2 Session)

TOTAL: 30 hours

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Textile Testing and Quality Control Laboratory

List of equipment required for a batch of 30 students

S. No. Name of the equipment /

software

Quantity

Required

1. Electronic Balance 1

2. Automatic Wrap Reel 1

3. Lea Strength tester 1

4. Yarn appearance tester 1

5. Single yarn twist tester 1

6. Fabric tensile strength tester 1

7. Double yarn twist tester 1

8. Martindale abrasion tester 1

9. Fabric bursting strength tester 1

10. Fabric stiffness tester 1

11. Fabric crease recovery tester 1

12. Drape meter 1

13. Beesley’s Balance 4

14. Air-permeability tester 1

15. Course length tester 1

16. Crimp tester 2

17. Single yarn strength tester 1

Total 21

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U15FT605R COMPUTER AIDED GARMENT DESIGN LABORATORY 0 0 4 2

COURSE OBJECTIVE

To impart practical knowledge on pattern making, grading and marker planning through industrial CAD

software and developing design through commercial designing software.

COURSE OUTCOMES

At the end of the study of this course, the students will be able to,

1. Develop fashion drawings for children’s, ladies and men’s garments using a computer and related software.

2. Draft the patterns and grade it.

3. Generate marker plan.

LIST OF EXPERIMENTS

1. Practice of pattern making and grading software features. (2 sessions)

2. (i) Development of design, pattern and pattern grade for children’s frock.

(ii) Preparation of marker plan.

(iii) Calculation of marker efficiency for one-way fabric of varying fabric width. (1session)

3. (i) Development of design, pattern and pattern grade for children’s body suit.

(ii) Preparation of marker plan.

(iii) Calculation of marker efficiency for one-way fabric of varying fabric width. (1session)

4. (i) Development of design, pattern and pattern grade for baby romper.

(ii) Preparation of marker plan.

(iii) Calculation of marker efficiency for two-way fabric of 38” and 42” width. (1session)

5. (i) Development of design, pattern and pattern grade for ladies top.

(ii) Preparation of marker plan.

(iii) Calculation of marker efficiency for plaid fabric of 44” and 52” width. (1session)

6. (i) Development of design, pattern and pattern grade for ladies party wear.

(ii) Preparation of marker plan.

(iii) Calculation of marker efficiency for plaid fabric of 44” and 52” width. (1session)

7. (i) Development of design, pattern and pattern grade for ladies skirt.

(ii) Preparation of marker plan.

(iii) Calculation of marker efficiency for corduroy fabric of 38” and 60” width and develop a lay lot plan.

(1session)

8. (i) Development of design, pattern and pattern grade for men’s full-sleeve shirt.

(ii) Preparation of marker plan for checked fabric of 52” and 60” width.

(iii) Calculation of marker efficiency and development of lay lot plan. (1session)

9. (i) Development of design, pattern and pattern grade for men’s formal trousers.

(ii) Preparation of marker plan for pencil stripe fabric of 60” and 72” width.

(iii) Calculation of marker efficiency and development of lay lot plan. (1session)

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10. (i) Development of design, pattern and pattern grade for men’s formal shorts.

(ii) Preparation of marker plan for pencil stripe fabric of 60” and 72” width.

(iii) Calculation of marker efficiency and development of lay lot plan. (1session)

11. (i) Development of design, pattern and pattern grade for men’s brief.

(ii) Preparation of marker plan.

(iii) Calculation of marker efficiency for single jersey knitted fabric of 30” dia and develop a lay lot plan.

(1session)

12. (i) Development of design, pattern and pattern grade for men’s vests.

(ii) Preparation of marker plan.

(iii) Calculation of marker efficiency for single jersey knitted fabric of 36” dia and develop a lay lot plan

(1session).

TOTAL: 60 hours

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Computer- Aided Garment Design Laboratory

List of equipment required for a batch of 30- students

S.

No.

Name of the equipment /

software

Quantity

Required

1. Computers-Pentium IV 30

2. Scanner 1

3. Pattern Drafting, Grading and

Marker Planning

Software -Tuka CAD

1

4. Pattern Drafting, Grading and

Marker Planning

Software -Lectra software

30

5. Reach Fashion Studio 1

6. Adobe Photoshop 30

7. Corel Draw 30

Total 123

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U15FT906R LEAN MANUFACTURE IN APPAREL INDUSTRY

3 0 0 3

COURSE OBJECTIVE

To impart knowledge on the basics of lean manufacturing, various tools of lean manufacturing, strategy

formulation and implementation of lean in textile and apparel industries.

COURSE OUTCOMES

At the end of the study of this course the students will be able to,

1. Explain the basics of lean manufacturing. 2. Describe the steps involved in lean implementation in garment industry and evaluation of its effectiveness in

the process.

3. Discuss about the various lean tools and its appropriateness for various textile industries.

4. Discuss the transparent flow of process and apply the lean tools in inventory control.

5. Analyze cases and develop strategic solutions for continuous improvement in garment industry.

UNIT I Introduction 9 Introduction: History of Lean manufacturing, toyota production system (TPS), Lean practices Vs traditional

business practices, three types of wasteful practices, 8 wastages, profit leakages due to wastages, over

production, higher inventory, waiting time, unnecessary conveyance and motion of materials, over processing,

rework, repairs, rejections, wastage of people talents.

Concept of 5s: Seiri, seiton, seisō, seiketsu, shitsuke. Housekeeping practices in spinning, weaving, processing

and garment industries for cleaner production.

UNIT II Critical to Quality and Value Stream Mapping 9

Critical to Quality and Value Stream Mapping: Takt Time, calculation of time for producing exact quantity

required, pull and push system of manufacturing, concepts of JIT, identifying non-value activities, eliminating

non-value activities through value stream mapping (VSM) in garment industry.

UNIT III Statistical Tools 9

Statistical Tools: Defect / defective distribution measurement using normal distribution. DMAIC (Define-

Measure-Analyze-Improve-Control) model in world class zero defect programme (ZED model). Sampling:

Sampling plan for attributes and continuous variables. AQL levels.

UNIT IV Lean Concepts in Inventory Control 9

Lean Concepts in Inventory Control: Lean concepts applied in transparent flow of information and

production between processes and customers, reduction of inventory using simple Economic Order Quantity

(EOQ) and batch production models, influence of WIP. Continuous Improvement: Application of KAIZEN in

garment industry for continuous improvement.

UNIT V Lean Tools for Garment Industry 9

Lean Tools for Garment Industry: Concepts and applications of single piece flow, quick change-over

(SMED), total productive maintenance (TPM), heijunka, cellular production system, visual controls (Andon),

poka-yoke, super market concept, kanban etc. Lean implementation strategy in textile and apparel industry, case

studies of lean manufacturing in spinning, weaving, knitting, processing and garment industries.

Total: 45 hours

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TEXTBOOKS

1. Hobbs Dennis P, “Lean Manufacturing Implementation: A Complete Execution Manual for Any

Size Manufacturer”, Cengage Learning India Private Ltd, NewDelhi, 2009.

2. Rajmanohar T P,“Lean Product Development: Concept and Models”, ICFAI Press, 2009.

3. Desai, Aruna, “Lean manufacturing: Perspectives and Applications”, ICFAI Press, 2008.

REFERENCES

1. Gopalakrishnan N, “Simplified Lean Manufacture: Elements, Rules, Tools and Implementation”,

Prentice Hall of India Learning Pvt. Ltd., 2010.

2. Askin Ronald G; “Goldberg Jeffrey B, ―Design and Analysis of Lean Production Systems”, John

Wiley & Sons Inc, 2003.

3. Chowdhury, Subir, “Design for Six Sigma”, Dearborn Trade, 2002.

4. Chowdhury, Subir, “The Power of Six Sigma”, Pearson Education (Singapore) Pvt. Ltd., 2001.

5. Creveling C M; Sluisky J L; Antis, Jr. D, “Design for Six Sigma Technology and Product

Development”, Pearson Education (Singapore) Pvt. Ltd., 2004.

6. Truscott William T, “Six Sigma Continual Improvement for Business: A Practical Guide”, Elsevier,

2009.

7. Rajmanohar T P, ‘Cost of Poor Quality: Concept and Applications”, ICFAI Press, 2008.

8. Colenso Michael, “Kaizen Strategies for Successful Organizational Change”, Pearson Education

(Singapore) Pvt. Ltd., 2002.

9. Imai, Masaaki, “Kaizen: The Key to Japan's Competitive Success”, McGraw-Hill, 1986.

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U15FT907R SOURCING AND SAMPLING 3 0 0 3

COURSE OBJECTIVE

To impart knowledge of sampling procedure, importance of samples, raw materials and accessories sourcing for

the garment production.

COURSE OUTCOMES

At the end of this course the students will be able to,

1. Explain the concept of sample construction and basic standards on the product and process design.

2. Discuss the importance and functions of sampling.

3. Discuss the various aspects of sourcing.

4. Developing the expertise for appropriate selection of fabrics, trims and other materials.

5. Explain the concept of sourcing.

Unit I Sampling 9 Need and importance of samples, types of samples: proto type, photo type, fit sample, preproduction,

production, shipment, gold sealed, sales man sample, quality requirements of sampling and lead time, sampling

and costing: approvals.

UNIT II Sampling Construction 9 Construction of sample, basic standard of professional sewing, relationship between pattern making and the

ultimate quality of finished sample, analysis of

component pieces and trimmings, planning a logical garment construction sequence, economic use of fabric

yardage, maintaining grain lines, interfacing and lining.

Unit III Basics of Sourcing 9 Procurement and outsourcing in the fashion industry, benefits and risks of outsourcing, searching, evaluating

and maintaining sources of supply, make, buy decisions, single, multiple sourcing decisions, domestic, global

sourcing decisions.

Unit IV Sourcing Concepts 9

Manufacturing resource planning, supply chain management, demand

chain analysis, just in time technology, quality specifications, inventory control, purchase orders, inspection,

follow up.

Unit V Sourcing of Materials 9

Sourcing: Definition, need for sourcing and method of sourcing.

Raw Material Sourcing: Sourcing of fabrics, bought out components, markets: domestic and international

markets.

Accessories Sourcing: Sourcing of accessories: linings, buttons, zippers, labels. Effective sourcing of

accessories.

TOTAL: 45 hours

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TEXTBOOKS

1. E.Glock Ruth and I. Kunz Grace, "Apparel Manufacturing , Sewn Product Analysis",4th

Edition,

Prentice Hall of India, 2005.

2. Jeannette Jamow, Kitty G.Dickerson, "Inside the Fashion Business", 7th

Edition, Prentice,Hall of

India, 2003.

REFERENCES

1. Jacob Solinger, "Apparel Manufacturing", Handbook, VanNostrand Reinhold Company, 1980.

2. Tyler J David "Materials Management in Clothing Production", Oxford BSB professional books,

1991.

3. Herold Carr and Barbara Lathem,"The Technology of Clothing Manufacturing", 2nd Edition,

Blackwell Scientific Publications, London, 1988.

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OPEN ELECTIVE

Civil Engineering

U15CE1001R BUILDING SERVICES AND SAFETY REGULATIONS L T P C

3 0 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Describe the basics of electrical systems in buildings

2. Explain the principles of illumination and design of these systems

3. Describe the basics of thermodynamics, refrigeration principles and air conditioning systems

4. Discuss the fire safety regulations and installation of fire safety equipments and systems

5. Explain the water supply and sewerage systems for buildings

UNIT-I ELECTRICAL SYSTEMS IN BUILDINGS 9

Basics of electricity- Single / Three phase supply- Protective devices in electrical installations- Earthing for safety- Types of earthing-

ISI specifications- Types of wires, wiring systems and their choice- Planning electrical wiring for building- Main and distribution

boards- Transformers and switch gears- Layout of substations.

UNIT-II PRINCIPLES OF ILLUMINATION & DESIGN 9

Visual tasks- Factors affecting visual tasks- Modern theory of light and colour- Synthesis of light- Additive and subtractive synthesis

of colour- Luminous flux- Candela- Solid angle illumination- Utilisation factor- Depreciation factor- MSCP- MHCP- Lans of

illumination- Classification of lighting- Artificial light sources- Spectral energy distribution- Luminous efficiency- Colour

temperature- Colour rendering. Design of modern lighting- Lighting for stores, offices, schools, hospitals and house lighting.

Elementary idea of special features required and minimum level of illumination required for physically handicapped and elderly in

building types.

UNIT-III REFRIGERATION PRINCIPLES & APPLICATIONS 9

Thermodynamics- Heat- Temperature, measurement transfer- Change of state- Sensible heat- Latent heat of fusion, evaporation,

sublimation- saturation temperature- Super heated vapour- Subcooled liquid- Pressure temperature relationship for liquids-

Refrigerants- Vapour compression cycle- Compressors- Evaporators- Refrigerant control devices- Electric motors- Starters- Air

handling units- Cooling towers- Window type and packaged air-conditioners- Chilled water plant- Fan coil systems- Water piping-

Cooling load- Air conditioning systems for different types of buildings- Protection against fire to be caused by A.C. Systems

UNIT-IV FIRE SAFETY REGULATIONS AND INSTALLATION 9

Causes of fire in buildings- Safety regulations- NBC- Planning considerations in buildings like non-combustible materials,

construction, staircases and lift lobbies, fire escapes and A.C. systems. Special features required for physically handicapped and

elderly in building types- Heat and smoke detectors- Fire alarm system, snorkel ladder- Fire lighting pump and water storage- Dry and

wet risers- Automatic sprinklers

UNIT-V WATER SUPPLY AND SEWERAGE SYSTEM FOR BUILDINGS 9

Plumbing fixtures and fixture fittings- Water conserving fittings- Over flows- Strainers and connectors- Prohibited fixtures- Special

fixtures- Installation of water closet- Urinals - Flushing devices- Floor drains- Shower stall- Bath tub- Bidets- Minimum plumbing

facilities- Rain water harvesting systems- Necessity- Construction- Different types

TOTAL: 45 PERIODS

TEXT BOOKS:

1. David V. Chadderton Building Services Engineering Taylor & Francis, 2000

2. John Knight , W.P.Jones “Newnes Building services” Routledge 2003

REFERENCES:

1. E.R.Ambrose, “Heat Pumps and Electric Heating”, John and Wiley and Sons, Inc., New York, 2009

2. Handbook for Building Engineers in Metric systems, NBC, New Delhi, 2011

3. Philips Lighting in Architectural Design, McGraw-Hill, New York, Latest edition

4. R.G.Hopkinson and J.D.Kay, “The Lighting of buildings”, Faber and Faber, London, 1972

5. William H.Severns and Julian R.Fellows, “Air-conditioning and Refrigeration”, John Wiley and Sons, London, 1988

6. A.F.C. Sherratt, “Air-conditioning and Energy Conservation”, The Architectural Press, London, 2007

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U15CE1002R DISASTER MANAGEMENT L T P C

3 0 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Distinguish various types of disasters, their causes and impacts on environment and society

2. Explain different phases of disaster management cycle

3. Assess vulnerability and prepare disaster risk reduction measures

4. Explain the vulnerability profile of India

5. Prepare hazard zonation maps for all types of hazards

UNIT-I INTRODUCTION TO DISASTERS 9

Definitions: Disaster, Hazard, Vulnerability, Resilience, Disaster Preparedness - Classification of Disasters - Causes for Disasters -

Impacts of Disasters on Society, Environment, Economics, Politics, Health, etc. - Types of Vulnerability - The Sphere Project

UNIT-II APPROACHES TO DISASTER RISK REDUCTION 9

Phases of Disaster Management Cycle - Culture of safety, prevention, mitigation, and preparedness - Community-based Disaster Risk

Reduction - Structural and Non-structural mitigation measures

UNIT-III INTER-RELATIONSHIP BETWEEN DISASTERS AND DEVELOPMENT 9

Linkage between Development and Disasters -Impact of Development Projects on Environment and Society - Climate Change

Adaptation - IPCC - India’s Participation - Relevance of Indigenous Knowledge, Appropriate Technology, and Local Resources

UNIT-IV DISASTER RISK MANAGEMENT IN INDIA 9

Hazards-Vulnerability Profile of India - Components of Disaster Relief: Water, Sanitation, Food, Shelter, Health, etc. -National Policy

and Disaster Management - Institutional Framework for Disaster Management in India - Role of NGOs in Disaster Risk Reduction -

Role of Armed Forces during Disasters

UNIT-V DISASTER MANAGEMENT: APPLICATIONS AND CASE STUDIES AND FIELD WORKS 9

Application of Information Technology, Remote Sensing Technology, and Geographic Information System in Disaster Risk Reduction

- Case Studies on Landslide Hazard Zonation, Seismic Assessment of Buildings and Infrastructures, Drought Assessment, Coastal

Flooding Assessment , Storm Surge Assessment, Fluvial and Pluvial Floods Assessment, Forest Fires Assessment

TOTAL: 45 PERIODS

TEXT BOOKS:

1. Singhal J.P. “Disaster Management”, Laxmi Publications, 2010.

2. Tushar Bhattacharya, “Disaster Science and Management”, McGraw Hill India Education Pvt. Ltd., 2012.

3. Pardeep Sahni and Madhavi Malalgoda Ariyabandu, “Disaster Risk Reduction in South Asia”, PHI Learning Private Limited,

Delhi- 110092, 2017

4. Gupta Anil K, Sreeja S. Nair. Environmental Knowledge for Disaster Risk Management, NIDM, New Delhi, 2011

5. Kapur Anu Vulnerable India: A Geographical Study of Disasters, IIAS and Sage Publishers, New Delhi, 2010.

REFERENCES:

1. Govt. of India: Disaster Management Act , Government of India, New Delhi, 2005

2. Government of India, National Disaster Management Policy,2009.

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U15CE1003R ENERGY EFFICIENCY AND GREEN BUILDING L T P C

3 0 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. To describe the importance of energy resources, its availability and conservation. To gain knowledge about heat loss & gain

and air quality requirements in buildings.

2. To study and identify the methods adopted to make the building as energy efficient.

3. To gain knowledge about Environmental impact assessment due to buildings and construction materials.

4. To study about different green building rating systems with real time examples.

5. To create awareness about clean development mechanism and the role of UNFCCC.

UNIT-I INTRODUCTION 9

Definition and concepts, Energy and water as a resource - Criticality of resources - Needs of modern living - Heat loss and heat

gain in buildings- thermal comfort improvement methods - other building comforts -indoor air quality requirements -electrical

energy conservation.

UNIT-II ENERGY EFFICIENT BUILDINGS 9

Zero Energy Building (ZEB) - Nearly Zero Energy Building (NZEB) - energy consumption - defining low energy buildings-

opportunities and techniques for energy conservation in buildings - water conservation - water management system - water

efficient landscaping - green roofing - rainwater harvesting - sanitary fixtures and plumbing systems - wa4stewater treatment and

reuse - process water strategies - adoption to sustainable resources, process and technologies- Energy Conservation

Opportunities in Public and Private Buildings.

UNIT-III CONSTRUCTION MATERIALS AND PRACTICES 9

Construction materials - Embodied energy, carbon content, and emission of CO2 ,SO2 and NOx of building materials, elements

and construction process- Current practice and low environmental impact alternatives.

UNIT-IV BUILDING ASSESSMENT SCHEMES 9

Energy efficiency ratings & ECBC - 2007 - Various energy efficiency rating systems for buildings - LEED, BEE, & GRIHA -

case studies.

UNIT-V CLEAN DEVELOPMENT MECHANISM 9

Clean Development Mechanism - CDM Benefits for energy conservation methodology and procedure - Eligibility Criteria -

UNFCCC - role of UNFCCC and Government of India.

TOTAL: 45 PERIODS

TEXT BOOKS:

1. Sustainable Building, Design Manual: Published by The Energy and Resources Institute, Darbari Seth block, IHC Complex,

Lodhi Road, New Delhi-110003.

2. KILBERT, Charles , (2008) Sustainable construction : Green Building Design and Delivery John Wiley and Sons.

3 BROWN, G.Z. and DEKAY, Mark, 2001. Sun, Wind & Light - Architectural Design Strategies, Second Edition , John

Wiley & sons, Inc.

REFERENCES:

1. ECBC Code 2007 ( Edition 2008) published by Bureau of Energy Efficiency, New Delhi

2. Bureau of Energy Efficiency Publications - rating System, TERI PUBLICATIONS .

3 GRIHA Rating System, LEED Publications

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U15CE1004R MUNICIPAL SOLID WASTE MANAGEMENT L T P C

3 0 0 3

COURSE OUTCOMES (On completion of the course, the students will be able to):

1. Identify the sources, types and characteristics of solid wastes.

2. Choose the on-site storage methods and processing techniques.

3. Summarize the methods of collection and its components.

4. Outline the off-site processing techniques & equipments and resource recovery from solid wastes.

5. Evaluate the processing techniques and disposal methods for managing the municipal solid wastes.

UNIT-I SOURCES AND TYPES 9

Sources and types of solid wastes - Quantity - factors affecting generation of solid wastes; characteristics - methods of sampling

and characterization; Effects of improper disposal of solid wastes - public health effects. Principle of solid waste management -

social and economic aspects; Public awareness; Role of NGOs; Solid waste management rules 2016 - case studies.

UNIT-II ON-SITE STORAGE AND PROCESSING 9

On-site storage methods - Materials used for containers - on-site segregation of solid wastes - public health & economic aspects

of storage - options under Indian conditions - Critical evaluation of options.

UNIT-III COLLECTION AND TRANSFER 9

Methods of Residential and commercial waste collection - Collection vehicles - Manpower- collection routes - Analysis of

collection systems; Transfer stations - Selection of location, operation & maintenance; options under Indian conditions - Field

problems- solving.

UNIT-IV OFF-SITE PROCESSING 9

Processing techniques and equipment; Resource recovery from solid wastes - Composting, incineration, Pyrolysis - Options under

Indian conditions - Case studies.

UNIT-V DISPOSAL 9

Dumping of solid waste; Sanitary landfills - Site selection, design and operation of sanitary landfills -Leachate collection and

treatment.

TOTAL: 45 PERIODS

TEXT BOOKS:

1. George Tchobanoglous, “Integrated Solid Waste Management”, McGraw-Hill Publishers,2003.

2. Vesilind P.A. and Rimer A.E, “Unit Operations in Resource Recovery Engineering”, Prentice Hall, Inc., 1981

3 Paul T Willams, “Waste Treatment and Disposal”, John Wiley and Sons, 2000

REFERENCES:

1. Manual on Municipal Solid Waste Management, CPHEEO, Ministry of Urban Development, Government of India, New

Delhi, 2000.

2. Landreth R.E, and P.A and Rebers, “Municipal Solid Wastes -problems and Solutions”, Lewis Publishers, 2000.

3 Bhide A.D, and Sundaresan, B.B, “Solid Waste Management in Developing Countries”, INSDOC, 2003.

4. Ramachandra T.V, “Management of Municipal Solid Waste”, TERI press, New Delhi, 2009.

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Mechanical Engineering

U15ME1001R RAPID PROTOTYPING 3 0 0 3

COURSE OUTCOMES

At the end of this course the students will be able to

CO1 Discuss the advantages and need of time compression in recent product development and

explain the product development steps.

CO2 Classify Rapid prototyping techniques (RP) and explain the liquid based RP process like

STL and direct metal laser sintering principles and also discuss its process parameters.

CO3 Explain the principle of working solid based RP process like fused deposition modeling

and laminated object manufacturing and also discuss its process parameters.

CO4 Elaborate various powder based RP process like solid ground curing and 3D printer and its process

parameters.

CO5 Adapt the advancement in manufacturing technology such as LENS and BPM.

UNIT – I INTRODUCTION 9

Need for time compression in product development, Product development – conceptual design – development –

detail design – prototype – tooling.

UNIT – II CLASSIFICATION 9

Classification of RP systems, Stereo lithography systems – Principle – process parameters – process details –

machine details and applications – Direct Metal Laser Sintering (DMLS) system – Principle – process

parameters – process details – machine details and applications.

UNIT – III FDM & LOM 9

Fusion Deposition Modeling – Principle – process parameters – process details – machine details and

applications – Laminated Object Manufacturing – Principle – process parameters – process details – machine

details and applications..

UNIT – IV SGC & 3DP 9

Solid Ground Curing – Principle – process parameters – process details – machine details and applications. 3D

printers – Principle – process parameters – process details – machine details and applications, and other concept

modelers like thermo jet printers, Sander’s model maker. The JP- system 5, Object Quadra system.

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UNIT – V LENS & Rapid Tooling 9

Laser Engineering Net Shaping (LENS), Ballistic Particle Manufacturing (BPM) – Principle – Introduction to

rapid tooling – direct and indirect method, software for RP – STL files, Magics, Mimics – Application of Rapid

prototyping in Medical field.

Lecture: 45; Tutorial: 0; Total: 45

TEXT BOOKS:

Text Books:

1. Pham D.T. &Dimov.S.S., “Rapid manufacturing”, Springer-Verlag, London, 2012.

2. Amitabha Ghosh, “Rapid Prototyping – A Brief Introduction”, Affiliated East –West

Press Private Limited, New Delhi, 2015.

REFERENCES:

1. N.Hopkinson, R.J.M, Hauge, p m, dickens, “Rapid Manufacturing – An Industrial revolution for the

digital age”, Wiley, 2006

2. Ian Gibson, “Advanced Manufacturing Technology for Medical applications: Reverse Engineering,

Software conversion and Rapid Prototying”, Wiley, 2006

3. Paul F. Jacobs, Rapid Prototyping and Manufacturing, “Fundamentals of Stereolithography”, McGraw

Hill 1993.

Chua C.K, Leong K.F and Lim C.S, Rapid Prototyping: Principles and Applications, second edition, World

Scientific, 2003.

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U15ME1002R RENEWABLE ENERGY SOURCES 3 0 0 3

Pre-Requisite Subject: Power plant Engineering, Environmental Sciences

Course Outcomes

At the end of this course the students will be able to,

CO 1 Analyse the power demand scenario in world level and impact of various renewable

energy sources in satisfying power demand.

CO 2 Discuss the principle of operation and the application of solar PV system and Bio Mass

power generation system.

CO 3 Identify the components of wind energy conversion system, geothermal and hydel

power system.

CO 4 Explain the components of tidal power generation and wave energy system.

CO 5 Compare and contrast the various components and methods of Ocean Energy

conversion Systems.

UNIT – I INTRODUCTION 9

World energy use –energy scenario in india– reserves of energy resources – energy cycle of the earth –

environmental aspects of energy Utilization – renewable energy resources and their importance.

UNIT – II SOLAR & BIO ENERGY 9

Introduction – radiation at ground level – collectors – solar PV cells – applications of solar energy – Biomass

Energy – Introduction – Biomass Conversion – Biogas Production – Ethanol Production – Pyrolysis and

Gasification – Direct Combustion – Applications.

UNIT – III WIND, GEO THERMAL AND HYDRO ENERGY SOURCES 9

Introduction – Wind Energy – types of Wind power systems. Geothermal energy – types of geothermal energy

sites, site selection, and geothermal power plants, Hydro energy – Feasibility of small, mini and micro hydro

plants.

UNIT – IV TIDAL AND WAVE ENERGY 9

Introduction – origin of tides – power generation schemes – Wave Energy – basic theory – wave power

Devices.

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UNIT – V OTHER RENEWABLE ENERGY SOURCES 9

Introduction – Open and Closed OTEC cycles – Ocean Currents. Hydrogen and Storage – Fuel Cell Systems –

Hybrid Systems.

Total: 45

TEXT BOOKS:

1. Twidell John; Weir, Tony, “Renewable energy resources”, Taylor & Francis, 2010

2. Godfrey Boyle, “Renewable energy – power for a sustainable future”, Oxford

University Press, 2010

3. Kothari DP, Singal KC and Rakesh Ranjan, ‘Renewable Energy Sources and Emerging

Technologies’ PHI Learning Pvt. Ltd.2011.

4. S.A. Abbasi and NaseemaAbbasi, “Renewable energy sources and their environmental impact”,

Prentice- Hall of India, 2001

REFERENCES:

1. Yogi Goswami, ‘Principles of Solar Engineering’ CRC Press, 2015, ISBN 10: 1466563788.

2. G D Rai, “Solar energy utilization”, Khanna Publishers, 2005.

3. G D Rai, “Non-conventional sources of energy”, Khanna Publishers, 2002.

4. MukundR.Patel, “Wind and Solar Power Systems”, CRC Press, Taylor and Francis, 2005.

5. T.N.Veziroglu, Alternative Energy Sources, Vol 5 and 6, McGraw Hill, 1978.

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U15ME1003R INDUSTRIAL ROBOTICS 3 0 0 3

Pre-requisite subject: Kinematics of machinery, Mechatronics system design and applied hydraulics and

pneumatics systems.

Course Outcomes

Upon completion of this course the students will be able to

CO1 Analyse the kinematics process of robotics system.

CO2 Compare the various types of robotics drives and controls.

CO3 Discuss the various types of sensors used for image processing and data reduction

methods.

CO4 Design the work cell layout and discuss the machine interface.

CO5 Write the robot programming for engineering applications and discuss the

application of artificial intelligence.

UNIT I INTRODUCTION AND ROBOT KINEMATICS 9

Definition need and scope of industrial robots – Robot anatomy – Work volume – Precision movement –

Classification of robots. Robot Kinematics – Direct and inverse kinematics – Robot trajectories – Control of

robot manipulators – Robot dynamics – Methods for orientation and location of objects.

UNIT II ROBOT DRIVES AND CONTROL 9

Controlling the robot motion – Position and velocity sensing devices – Design of drive systems – Hydraulic and

pneumatic drives – Linear and rotary actuators and control valves –Electro hydraulic servo valves, electric

drives – Motors – Designing of end effectors – Vacuum, magnetic and air operated grippers.

UNIT-III ROBOT SENSORS 9

Transducers and sensors – Sensors in robots – Tactile sensors – Proximity and range sensors – Sensing joint

forces – Robotic vision system – Image Gribbing – Image processing and analysis – Image segmentation –

Pattern recognition – Training of vision system.

UNIT-IV ROBOT CELL DESIGN AND APPLICATION 9

Robot work cell design and control – safety in robotics – Robot cell layouts – Multiple Robots and machine

interference – Robot cycle time analysis. Industrial application of robots.

UNIT-V ROBOT PROGRAMMING, ARTIFICIAL INTELLIGENCE AND EXPORT SYSTEMS 9

Methods of robots programming – Characteristics of task level languages lead through programming methods –

Motion interpolation. Artificial intelligence – Basics – Goals of artificial intelligence – AI techniques – Problem

representation in AI – Problem reduction and solution techniques – Application of artificial intelligence in

robots.

Total Number of hours: 45

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Learning Resources

Text Books:

1. Mikell, P.Groover, Mitchell Weis, Roger, N.Nagel, Nicholas G.Odrey, “ Industrial robotics Technology,

Programming and applications” Mc Graw-Hill 2012.

2. K.S.Fu, R.C.Gonzalez and C.S.G lee, “Robotics control, Sensing, Vision and Intelligence” Mc Graw-

Hill, 2008.

Reference Books:

1. Richard D, Klafter, Thomas A, Chmielewski, MichealNegin, “Robotics Engineering – an integrated

Approach”, Prentice-Hall of India Pvt Ltd 1984.

2. Deb S.R, “Robotics Technology and Flexible Automation”, Tata Mc Graw-Hill, 1994.

3. Timothy Jordanides et al, “Expert Systems and Robotics”, Springer-Verlag, New York may 1991.

4. Appukuttan K.K, “Robotics”I.K International publishing House Pvt.Ltd. New delhi.2018.

5. Ramachandran Nagarajan,” Introduction to Industrial Robotics” Pearson.2016.

6. Ashitava Ghosal, Robotics fundamental Concepts and Analysis, Oxford University Press

11thcompression 2015.

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U15ME1004R INDUSTRIAL SAFETY 3 0 0 3

Pre-requisites subjects: Nil

Course Outcomes

Upon completion of this course the students will be able to

CO1 Implement various safety acts when dealing with general risky industrial situation.

CO2 Analyse industrial environmental hygiene concepts and prevent procedure to from

diseases for human.

CO3 Estimate damages due to industrial accidents like firing, explosion and identify

corrects safety controls procedures.

CO4 Apply the principles of ergonomics to improve every day work environment.

CO5 Evaluate the importance of safety training and its impact on shop floor of factories.

Unit I BASICS OF SAFETY ENGINEERING & ACTS L 9 T 0

Evolution of modern safety concept – safety audit – Concept of an accident investigation and

reporting – safety performance monitoring. Acts – factories act – 1948 – Statutory authorities –

inspecting staff – Tamilnadu Factories Rules 1950 under Safety and health – environment act – 1986

– Air act 1981, water act 1974 – other acts. Safety in industries – General safety concepts, machine

guarding, hazards in metal removing process, welding process, cold and hot working process.

Unit II OCCUPATIONAL HEALTH AND INDUSTRIAL HYGIENE L 9 T 0

(Basic concepts, related hazards and exposure limits)

Physical Hazards – Noise, heat, recognition of chemical hazards-dust, fumes, mist, vapour, fog, gases.

Biological and Ergonomical Hazards-Basic concepts. Occupational Health-Concept and spectrum of

health – functional units and activities of occupational health services, preemployment and post-

employment medical examinations – occupational related diseases, levels of prevention of diseases,

notifiable occupational diseases. Hazard assessment, procedure, methodology; safety audit, checklist

analysis, what-if analysis, safety review, Preliminary Hazard Analysis (PHA), human error analysis,

hazard operability studies (HAZOP), safety warning systems.

Unit III FIRE ENGINEERING AND EXPLOSIVE CONTROL L 9 T 0

Fire properties of solid, liquid and gases – fire triangle – principles of fire extinguishing – active and

passive fie protection systems – various classes of fires – A, B, C, D, E – types of fire extinguishers –

Principles of explosion – Explosion Protection – Electrical Safety. Electrical Hazards – Primary and

Secondary hazards – concept of earthing – protection systems – fuses, circuit breakers and over load

relays – first aid.

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Unit IV ERGONOMICS L 9 T 0

Introduction to ergonomics: The focus of ergonomics, ergonomics and its areas of application in the

work system, a brief history of ergonomics, attempts to humanize work, modern ergonomics, future

directions for ergonomics. Anatomy, Posture and Body Mechanics: Some basic body mechanics,

anatomy of the sprine and pelvis related to posture, posture stability and posture adaptation, low back

pain, risk factors for musculoskeletal disorders in the workplace, behavioural aspects of posture,

effectiveness and cost effectiveness. Anthropometry and its uses in ergonomics, principles of applied

anthropometry in ergonomics. Applications of human factors engineering, man as a sensor, man as

information processor, man as controller – Man vs Machine – concepts of bio mechanics.

Unit V SAFETY TRAINING AND AWARENESS L 9 T 0

Importance of training – identification of training needs – training methods – programmes, seminars,

conferences, competitions – method of promoting safe practice – motivation – communication – role

of government agencies and private consulting agencies in safety training – creating awareness,

awards, celebrations, safety posters, safety displays, safety pledge, safety incentive scheme, safety

campaign – Domestic Safety and Training.

Total Number of hours: 45

Learning Resources

Text Books:

1. L.M. Deshmukh, “Industrial safety Management”, Tata Mc Grahill , edition2005.

2. Stephen. J. Guastello, “Human factors engineering and ergonomics”, CRC press Taylor & Francis

group, 2nd edition 2014.

REFERENCE BOOKS

1. The factories Act 1948, Madras Book Agency, Chennai, edition 2000.

2. Jeremy Stranks, “The Helth and Safety hand book” Viva publications, Editoin 2006.

3. M.H.Fuleker, Industrial Hygine and chemical Safety, IK International Publishing house Edition 2006.

4. AnupamaPrashar&Pratibha Bansal, “Industrial Safety and Environment”, S.K Kataria sons, New Delhi,

Edition 2009.

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U15ME1005R MAINTENANCE ENGINEERING 3 0 0 3

Pre-requisites subjects: Metrology and Measurement, Automobile Engineering

Course Outcomes

Upon completion of this course the students will be able to

CO1 Apply the basic principle of maintenance and practices the maintenance in organization and economics.

CO2 Discuss various maintenance polices and preventive maintenance.

CO3 Analyze the various aspects of condition monitoring and estimate on load and off load testing.

CO4 Evaluate various repair techniques and predict the fault locations.

CO5 Demonstrate various methods of repairing material handling equipment.

Unit I PRINCIPLES AND PRACTICES OF MAINTENANCE PLANNING L 9 T 0

Basic Principles of maintenance planning – Objectives and principles of planned maintenance activity

– Importance and benefits of sound Maintenance systems – Reliability and machine availability –

MTBF, MTTR and MWT – Factors of availability – Maintenance organization – Maintenance

economics.

Unit II MAINTENANCE POLICIES – PREVENTIVE MAINTENANCE L 9 T 0

Maintenance categories – Comparative merits of each category – Preventive maintenance,

maintenance schedules, repairs cycle - Principles and methods of lubrication – TPM.

Unit III CONDITION MONITORING L 9 T 0

Condition Monitoring – Cost comparison with and without CM – On-load testing and off-load testing

– Methods and instruments for CM – Temperature sensitive tapes – Pistol thermometers – wear-debris

analysis.

Unit IV REPAIR METHODS FOR BASIC MACHINE ELEMENTS L 9 T 0

Repair methods for beds, slideways, spindles, gears, lead screws and bearings – Failureanalysis –

Failures and their development – Logical fault location methods – Sequential fault location.

Unit V REPAIR METHODS FOR MATERIAL HANDLING EQUIPMENT L 9 T 0

Repair methods for Material handling equipment - Equipment records – Job order systems –Use of

computers in maintenance.

Total Number of hours: 45

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Learning Resources

Text Books

1. Srivastava S.K., “Industrial Maintenance Management”, - S. Chand and Co., 2006.

2. Bhattacharya S.N., “Installation, Servicing and Maintenance”, S. Chand and Co., 1995.

Reference Books

1. White E.N., “Maintenance Planning”, I Documentation, Gower Press, 1979.

2. Mishra R.C. and Pathak K. “Maintenance Engineering and Management” Prentice Hall of India Pvt.

Ltd. 2007.

3. Garg M.R., “Industrial Maintenance”, S. Chand & Co., 1986.

4. Higgins L.R., “Maintenance Engineering Hand book”, McGraw Hill, 5th Edition, 1988.

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U15ME1006R SUPPLY CHAIN MANAGEMENT 3 0 0 3

Pre-requisites subjects: NIL

Course Outcomes

Upon completion of this course the students will be able to

CO1 Classify the decision phases, apply competitive and supply chain strategies.

CO2 Discuss the various networks in designing the supply chain performance.

CO3 Analyze factors influencing network design.

CO4 Describe the role of forecasting in a supply chain.

CO5 Demonstrate the role of aggregate planning, inventory, IT and coordination in a

supply chain.

Unit I STRATEGIC FRAMEWORK ,DRIVERS AND METRICS L 9 T 0

Introduction to Supply Chain Management, Decision phases in a supply chain, Process views of a

supply chain: push/pull and cycle views, Achieving Strategic fit, Expanding strategic scope. Drivers

of supply chain performance, Framework for structuring Drivers, Obstacles to achieving strategic fit.

Unit II DESIGNING SUPPLY CHAIN NETWORK L 9 T 0

Factors influencing Distribution Network Design, Design options for a Distribution network, E-

Business and Distribution network, Framework for Network Design Decisions, Models for Facility

Location and Capacity Allocation.

Unit III FORECASTING IN SC L 9 T 0

Role of forecasting in a supply chain, Components of a forecast and forecasting methods. Time series

forecasting, quantitative forecasting, and forecasting errors. Risk management in forecasting.

Unit IV AGGREGATE PLANNING AND INVENTORIES IN SC L 9 T 0

Aggregate planning problem in SC, Aggregate Planning Strategies, Planning Supply and Demand in a

SC, Managing uncertainty in a SC: Safety Inventory. Impact of supply uncertainties and impact of

aggregation on safe inventory.

Unit V COORDINATION IN SC L 9 T 0

Modes of Transportation and their performance characteristics-transportation infra-structure and

policies- Trade off in transportation. Supply Chain IT framework, Coordination in a SC and Bullwhip

Effect. Effect on performance of lack of coordination-obstacles to coordination in a supply chain.

Total Number of hours: 45

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Learning Resources

Text Books

1. Sunil Chopra and Peter Meindl, Supply Chain Management - Strategy, Planning and Operation, 4th

Edition, Pearson Education Asia, 2010.

2. David Simchi-Levi, PhilpKamintry and Edith Simchy Levy, Designing and Managing the Supply Chain

- Concepts Strategies and Case Studies, 2nd Edition, Tata-McGraw Hill, 2000.

Reference Books

1. Shari.P.B and Lassen.T.S, “Managing the global supply chain”, Viva books, NewDelhi, 2000.

2. Ayers.J.B, “Hand book of supply chain management”, The St. Lencie press,2000.

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Electrical and Electronics Engineering

PREAMBLE

ELECTRIC MOBILITY

Electrical propulsion systems date back virtually to the time of Faraday and a substantial body of

literature exists in the library of the Institution of Electrical Engineers from which it is safe only to consider a

small amount in relation to current road vehicle developments. Similarly a considerable quantity of works are

available on aerospace structural design which can be found in the library of the Royal Aeronautical Society,

and on automotive systems developments within the library of the Institution of Mechanical Engineers. With the

massive recent step-changes in capital investment, first in the build-up to battery-electric vehicle development,

then in the switch to hybrid drive engineering, and finally the move to fuel-cell development – it would be

dangerous to predict an established EV technology at this stage.

The development of internal combustion engine vehicles, especially automobiles, is one of the greatest

achievements of modern technology. Automobiles have made great contributions to the growth of modern

society by satisfying many of its needs for mobility in everyday life. The rapid development of the automotive

industry, unlike that of any other industry, has prompted the progress of human society from a primitive one to

a highly developed industrial society. The automotive industry and the other industries that serve it constitute

the backbone of the word’s economy and employ the greatest share of the working population. However, the

large number of automobiles in use around the world has caused and continues to cause serious problems for the

environment and human life. Air pollution, global warming, and the rapid depletion of the Earth’s petroleum

resources are now problems of paramount concern.In recent decades, the research and development activities

related to transportation have emphasized the development of high efficiency, clean, and safe transportation.

Electric vehicles, hybrid electric vehicles, and fuel cell vehicles have been typically proposed to replace

conventional vehicles in the near future.

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COURSE OUTCOMES

At the end of this course the students will be able to,

Explain the need for electric and hybrid vehicles fundamentals.

Describe the energy sources of types of batteries and fuel cells.

Discuss the various types of motor control design features of Electric vehicle.

Illustrate the design of various considerations of electric vehicle.

Explain the hybrid design vehicle technology.

UNIT I INTRODUCTION 9

Need for electric and hybrid vehicles-Comparative study of electric and hybrid vehicles-Limitations of electric

vehicles- Petroleum resources- Global warming-Fuel cell vehicles-Optimum solutions for motor, drives and

batteries.

UNIT II ENERGY SOURCES 9

Battery Parameters-Power requirement of electric vehicles- Different types of batteries - Lead acid- Nickel

based-Sodium based-Lithium based- Metal Air based. Battery charging- Charger design- Quick charging

devices- Battery Modeling. Different type of energy storage – Solar, wind, compressed fluid. Fuel Cell- Fuel

cell characteristics- Fuel cell types-Hydrogen fuel cell- Connecting cell in series.

UNIT III PROPULSION MOTORS AND CONTROLLERS 9

Characteristic of permanent magnet and separately exited DC motors.– Basic Principles of BLDC Motor

Drives- Performance Analysis and Control of BLDC Machines- Inverters – DC and AC motor speed

controllers.

UNIT IV DESIGN OF ELECTRIC VEHICLES FUNDAMENTALS 9

Aerodynamic-Rolling resistance- Transmission efficiency- Grading Resistance -Vehicle mass- Electric vehicle

chassis and Body design considerations- Heating and cooling systems- Controllers- Power steering- Vehicle

Performance.

UNIT V HYBRID VEHICLES 9

Types of Hybrid- Series, parallel, parallel - Advantages and Disadvantages- Hybrid drive prospects - Hybrid

technology case studies - Production hybrid-drive cars -Hybrid passenger and goods vehicles.

Lecture: 45; Tutorial: 0; Total: 45 Hrs

TEXT BOOKS:

1. 1.Mehrdad Ehsani, “ Modern Electric, Hybrid Electric and Fuel Cell Vehicles”, CRC Press, 2009.

2. Ron HodKinson, “ Light Weight Electric/Hybrid Vehicle Design”, Butterworth Heinemann Publication,

2005.

REFERENCE BOOKS

1. Iqbal Husain, “ Electric and Hybrid Vehicles-Design Fundamentals”, CRC Press, 2003.

2. Jack Erjavec, “Hybrid, Electric & Fuel-Cell Vehicles”, Delmar, Cengage Learning, 2013.

3. James Larminie and John Lowry, “Electric Vehicle Technology Explained “ John Wiley & Sons, 2003.

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PREAMBLE

TO

ELECTRIFICATION IN BUILDING CONSTRUCTION

Engineers are responsible for the design, installation, and operation and monitoring of the mechanical,

electrical and public health systems required for the safe, comfortable and environmentally friendly operation of

modern buildings.

Engineers work closely with other construction professionals such as architects, structural engineers and

quantity surveyors. They influence the architecture of a building and play a significant role on the sustainability

and energy demand of a building. Within building services engineering, new roles are emerging, for example in

the areas of renewable energy, sustainability, low carbon technologies and energy management.

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COURSE OUTCOME

At the end of the course the student will be able to

Draw the layout of electrical wiring and explain various earthing methods.

Explain the construction and operation of transformer, motor, and sensors and its applications.

Explain the need for protection and analyze the selection of circuit breakers.

Outline the fundamentals of illumination.

Design the lighting schemes required for various types of buildings.

UNIT I ELECTRICAL SYSTEMS IN BUILDINGS 9

Basics of electricity–Single / Three phase supply–Earthing for safety–Types of earthing–ISI specifications–

Types of wires, wiring systems and their choice–Planning electrical wiring for building–Main and distribution

boards–Layout of substations

UNIT II ELECTRICAL EQUIPMENT AND SENSORS IN BUILDINGS 9

Transformer:Principle of operation – Construction – Classification of transformers - applications

Motor: Principle of operation – types of DC motor – types of AC motor – applications

Sensors:Principle of operation – types of sensors - Temperature Sensors, Proximity Sensor, Pressure Sensor,

Water Quality Sensor, Chemical Sensor, Gas Sensor, Smoke Sensor, IR Sensors, Level Sensors, Humidity

Sensors - applications

UNIT III RELAYS AND CIRCUIT BREAKERS 9

Need for protection – Essential qualities of protective relays – distance and differential relay. Switchgear –

Fault clearing and interruption of current – selection of circuit breakers.

UNIT IV PRINCIPLES OF ILLUMINATION 9

Visual tasks–Factors affecting visual tasks–Modern theory of light and color–Synthesis of light–Additive and

subtractive synthesis of color–Luminous flux–Candela–Solid angle illumination–Utilization factor–

Depreciation factor–MSCP–MHCP–Laws of illumination.

UNIT V LIGHTING DESIGN: INSTALLATION AND APPLICATION 9

Classification of lighting– Artificial light sources–Spectral energy distribution–Luminous efficiency–Colour

temperature–Colour rendering. Design of modern lighting–Lighting for stores, offices, schools, hospitals and

house lighting. Elementary idea of special features required and minimum level of illumination required for

physically handicapped and elderly in building types.

Lecture : 45, Tutorial :00; Total :45Hrs

Text books:

1. Udayakumar R., “Building Services”, Easwar Press, 2007.

2. Badriram, B.H.Viswakarma,”Power system protection and Switchgear”,Tata McGraw Hill,2001.

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References:

1. Philips.“Lighting in Architectural Design”, McGraw-Hill, New York, 1997.

2. Hopkinson R.G. and Kay J.D., “The Lighting of buildings”, Faber and Faber, London, 1969.

3. B.L.Theraja and A.K.Theraja , ”A Text Book of Electrical Technology” , S.Chand Publisher Vol2,2014.

4. A K.Sawhney, “A course in Electrical and Electronic Measurements and Instrumentation” Thanpat Roy

and Co.

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PREAMBLE

EMBEDDED SYSTEMS AND IoT

Internet of things is a new revolution of the Internet that is rapidly gathering thrust driven by the

advancements in networks, devices, wireless communications and networking technologies. The explosive

growth of the “Internet of Things” is changing our world and the rapid drop in price for typical IoT components

is allowing people to innovate new designs and products at home. An embedded system is a dedicated,

computer-based system for an application or product. An embedded system may either be an independent

system or a part of a larger system. In this course, the students will learn the fundamentals of embedded systems

and the devices and communication buses for devices network. The fundamentals of IoT with typical IoT

devices, interfacing between physical world and the device will also be covered.

After completing the course the students will

Apply their knowledge to build real time IoT applications for industries with the basics in programming

Differentiate the buses for serial and parallel communication in Embedded system applications

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U15EE1003R EMBEDDED SYSTEMS AND IoT 3 0 0 3

COURSE OUTCOMES At the end of this course the students will be able to,

Explain the architectural features of embedded system.

Describe the input-output devices for embedded network

Describe the interactions of embedded systems with the physical world

Describe the role of an operating system to support software in an IoT device

Explain the use of networking and basic networking hardware

UNIT I INTRODUCTION TO EMBEDDED SYSTEM 9

Introduction to Embedded systems – Processor embedded into a system – Embedded hardware units –

Register, memory devices, ports, timer, interrupt controllers – classification of embedded system – design

process in embedded system: design Metrics.

UNIT II DEVICES & BUSES FOR DEVICES NETWORK 9

I/O devices: timer and counting devices - serial communication using I2C, CAN, USB buses - parallel

communication using ISA, PCI, PCI/X buses, arm bus – internet enabled systems-network protocols.

UNIT III FUNDAMENTALS OF IoT 9

Introduction - Definition and Characteristics of IoT - Physical design - IoT Protocols - Logical design - IoT

communication models, IoT Communication APIs - Enabling technologies - Wireless Sensor Networks, Cloud

Computing, Big data analytics, Communication protocols, Embedded Systems, IoT Levels and Templates -

Domain specific IoTs - IoT Architectural view

UNIT II PYTHON & ELEMENTS OF IoT 9

Python –Introduction – Python Data types & Data Structures – Control flow – Functions – Modules – Packages

– File Handling – Date/Time operations – Classes –Simple examples -

Sensors and actuators – Analog sensors, Digital sensors-examples – Participatory Sensing, Industrial IoT and

Automotive IoT – Actuator- Communication modules – Zigbee - LoRa - RFID

UNIT IV BUILDING IoT & CASE STUDY 9

IoT platforms – Arduino – Raspberry Pi –Raspberry Pi Interfaces - Real time applications of IoT – Home

automation – Automatic lighting – Home intrusion detection – Cities – Smart parking – Environment – Weather

monitoring system – Agriculture – Smart irrigation

Lecture: 45, Tutorial: 0, TOTAL: 45 Hrs

TEXT BOOKS

1. P. Rajkamal, ‘Embedded System – Architecture, Programming and Design’, Tata McGraw Hill, 2010.

2. Arshdeep Bahga, Vijay Madisetti, "Internet of Things-A hands-on approach", Universities Press, 2015.

REFERENCES 1. Raj Kamal, “Internet of Things – Architecture and Design Principles”, Mc Graw Hill Education Pvt.

Ltd., 2017

2. Internet of Things and Data Analytics, Hwaiyu Geng, P.E, Wiley Publications, 2017

3. Manoel Carlos Ramon, ―Intel® Galileo and Intel® Galileo Gen 2: API Features and Arduino Projects

for Linux Programmers‖, Apress, 2014

4. Marco Schwartz, ―Internet of Things with the Arduino Yun‖, Packt Publishing, 2014

5. Adrian McEwen, Hakim Cassimally, “Designing the Internet of Things”, Wiley Publications, 2012

6. Olivier Hersent, David Boswarthick, Omar Elloumi, “The Internet of Things: Key applications and

Protocols”, Wiley Publications 2nd edition , 2013.

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PREAMBLE

TO

ENERGY CONSERVATION AND MANAGEMENT

Energy is one of the most important resources to sustain our lives. At present we still depend a lot on

fossil fuels and other kinds of non-renewable energy. The extensive use of renewable energy including solar

energy needs more time for technology development. In this situation Energy Conservation (EC) is the critical

needs in any countries in the world.

Energy saving is important and effective at all levels of human organizations – in the whole world, as a

nation, as companies or individuals. Energy Conservation reduces the energy costs and improves the

profitability.

Energy costs are often treated as a fixed overhead by organisations. But, by taking the right approach to

energy management it is possible to make considerable savings. Successful energy management must combine

an effective strategy with the right practical interventions. Many organisations would like to save energy, but

they need to make energy management an integral part of running the organisation to ensure success. Energy

Management is very important for the management of factories/companies, and Energy Conservation is one of

its major topics.

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COURSE OUTCOMES

At the end of the course the students will be able to

Assess role of energy in global economic development.

Explain methodology of energy audit and concept of instruments used.

Discuss various lamps and design energy efficient illumination schemes.

Apply energy conservation concepts in buildings.

Identify the energy conserving opportunities in utilities.

UNIT- I ENERGY SCENARIO AND BASICS 9

Classification of Energy – Purchasing Power Parity – Energy Security – Strategy to meet future energy

requirements – Objectives and features for electricity act 2003 – Energy efficiency standards and labeling –

Study of Global and Indian primary energy reserves – Study of energy scenario for India – Energy and

environment – Global environmental issues – Types of Energy – Electrical and Thermal energy basics – Energy

units and conversions.

UNIT- II ENERGY MANAGEMENT AND AUDIT 9

Definition and objectives of energy management and audit – Need for energy audit – Types of energy audit –

Methodology for conducting detailed energy audit – ENCON opportunities and measures – Energy audit report.

Energy costs – Benchmarking – Energy performance – Fuel and Energy substitution – Instruments and metering

for energy audit – Basic principles, components of material and energy balance – Sankey diagram – Financial

analysis terms – Payback period, ROI, NPV, IRR.

UNIT- III LIGHTING SYSTEMS 9

Introduction – Terms in Lighting and Illumination – Light sources - Lamp types – Arc Lamps, Vapour lamps –

Incandescent lamp, Fluorescent lamp – Energy saving lamps – CFL, LED – Lighting design for interiors –

Indoor and outdoor lighting schemes – Energy saving opportunities – Energy efficient lighting controls.

UNIT- IV ENERGY CONSERVATION IN BUILDINGS 9

Energy conservation building code (ECBC) – Compliance approaches – ECBC guidelines on Building

envelope, HVAC system, Service hot water, Water pumps – Energy consumption in Escalators and Elevators –

Building Energy Management Systems – Star ratings – Energy Efficiency Measures in AC and Lighting system.

UNIT- V ENERGY EFFICIENT OPPORTUNITIES IN UTILITIES 9

Introduction to Compressed air system components – Heat transfer loops in refrigeration systems – Standards

and labelling of room air conditioners – Introduction to Fans, Blowers and Compressors – Types of pumps,

Pump curves – Efficient operation of pumps – Components of cooling towers and its efficient operation -

Introduction to DG set system.

Energy Efficiency and energy savings in Compressed Air System, HVAC system, Fans and Blowers, Pumping

system, Cooling towers, and DG sets.

Lecture: 45; Tutorial: 0; Total: 45

TEXT BOOKS:

1. “General Aspects of Energy Management and Energy Audit”, Bureau of Energy Efficiency, Fourth

Edition, 2015.

2. “Energy Efficiency in Electrical Utilities”, Bureau of Energy Efficiency, Fourth Edition, 2015.

REFERENCE BOOKS:

1. Chakrabarti A, “Energy Engineering and Management”, PHI, 2011.

2. Murphy W R, McKay G, “Energy management”, Elsevier, 2009.

3. Rajput R K, “Utilization of Electrical Power”, Lakshmi Publications, 2006.

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PREAMBLE

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INSTRUMENTATION SYSTEMS

Instrumentation System for the engineering to focused on the principle and operation of measuring

instruments that are used in design and configuration of automated systems in electrical, pneumatic domains

etc. They typically work for industries with automated processes. The term “system” refers to a set of

components that are connected to form and act as an entire unit. An instrumentation system is collection of

instruments used to measure, monitor, and control a process. There are many applications of instrumentation

systems, within technological areas as large as those associated with communications, defence, transportation,

education, industrial manufacturing and research and development, and chemical and other process industries.

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U15EE1005R INSTRUMENTATION SYSTEMS 3 0 0 3

COURSE OUTCOMES:

At the end of the course the student will be able to,

1. Discuss the static and dynamic characteristics and define various errors.

2. Derive torque equation for various types of meters

3. Calculate R, L and C using bridges.

4. Explain storage and display device

5. Discuss the various types of transducers

UNIT I INTRODUCTION 9

Functional elements of an instrument – Static characteristics: True value, Static error, static correction,

Reproducibility, Drift, Repeatability, Noise, Signal to Noise ratio, Accuracy and precision, Sensitivity,

Linearity, Threshold, Dead Zone, Resolution. Dynamic Characteristics: Speed of response, Fidelity, Lag,

Dynamic error – Errors: Gross error, Systematic error and Random error – Statistical evaluation of

measurement data – Standards and calibration.

UNIT II ELECTRICAL AND ELECTRONICS INSTRUMENTS 9

Principle and operation of analog voltmeters and ammeters: Moving Iron; attraction and repulsion type

instruments. Moving coil Instruments; PMMC, Dynamometer type, Torque equation – Single phase

Dynamometer type watt meter: Toque expression, Errors – Single phase Induction type energy meters –

Measurement of Power using Instrument transformers – Single Phase Electrodynamometer Power factor meters

and Weston Frequency meter.

UNIT III BRIDGES & INTERFERENCE TECHNIQUES 9

D.C bridges: Wheatstone bridge, Kelvin double bridge, Megger – A.C bridges: Maxwell’s, Anderson, Schering

- Interference & screening – Multiple earths and earth loops - Electrostatic and electromagnetic interference –

Grounding techniques.

UNIT IV STORAGE AND DISPLAY DEVICES 9

Magnetic disk and tape – Recorders, digital plotters and printers, CRT display, digital CRO, LED, LCD,

Memory cards & dot matrix display.

UNIT V TRANSDUCERS AND DATA ACQUISITION SYSTEMS 9

Classification of transducers – Selection of transducers – Resistive, capacitive & Inductive transducers –

Measurement of temperature – RTD, thermistors and thermocouples - Piezoelectric transducers - Digital

transducers – optical encoders - Elements of data Acquisition system – A/D, D/A converters.

Lecture: 45, Tutorial: 0, Total: 45 Hrs

TEXT BOOKS

1. A.K. Sawhney, “A Course in Electrical & Electronic Measurements &Instrumentation”, DhanpatRai and

Co, 2012.

2. RK Rajput, “Electrical Measurements and Measuring Instruments” S.Chand and Company Pvt. Ltd.,

Second Edition, 2013

REFERENCE BOOKS

1. E.O. Doebelin, “Measurement Systems – Application and Design”, Tata McGraw Hill Publishing

company, 2003.

2. A.J. Bouwens, “Digital Instrumentation”, Tata McGraw Hill, 1997.

3. D.V.S. Moorthy, ‘Transducers and Instrumentation’, Prentice Hall of India Pvt Ltd, 2007.

4. H.S. Kalsi, “Electronic Instrumentation”, Tata McGraw Hill, II Edition 2004.

5. J. B. Gupta, “A Course in Electronic and Electrical Measurements”, S. K. Kataria&Sons,Delhi, 2003.

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PREAMBLE

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RENEWABLE ENERGY SYSTEMS

Energy is an important source of all technological developments as well as for all basic needs. The

usage of renewable energy sources are the only way for sustainable development and future energy

requirements. Renewable energy encourages the generation of electricity without any environmental impact

and improves the economic growth of the country.

By choosing this elective the students will be able to know the importance of renewable energy sources for

power generation. And also they could understand how the fossil fuels are made an impact on environmental

issues. They will be familiar with the following

1. Concept of solar energy power production and solar photovoltaic cells and the application of solar PV

system and Bio Mass power generation system.

2. Principle of conversion of wind energy in to electric energy

3. Working of geothermal and hydro power stations.

4. Principle of the conversion of tidal and wave energy in to electric energy.

5. The emerging technology of power generation.

After completion of this subject students will know how the energy can be produced locally. This

knowledge would provide an opportunity to install small capacity power generation units independently for

their needs.

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COURSE OUTCOMES

At the end of this course the students will be able to,

Describe the power demand scenario in world level and impact of various renewable energy sources in satisfying power demand.

Explain the principle of operation and the application of solar system.

Outline in the components and to find the suitability based on the performance of wind energy and Conversion system, biomass energy system

Describe the principle of operation and the application of geo thermal power tidal power generation scheme, wave energy and OTEC scheme.

Illustrate the emerging energy generation systems of MHD, Thermal and fuel cells applications.

UNIT I INTRODUCTION 9

World energy futures–Energy sources and their availability – Energy cycle of the earth – environmental aspects

of energy utilization – Energy plantation- Renewable energy resources and their importance- Prospects of

Renewable energy sources.

UNIT II SOLAR ENERGY SYSTEMS 9

Introduction –Solar radiation and measurements-Solar energy collectors-solar energy storage systems- Solar

pond and applications- Applications of solar energy: solar pumping, solar cooking, solar distillation and solar

greenhouse.

UNIT III WIND AND BIOMASS ENERGY SYSTEMS 9

Introduction – Wind Energy conversion- Wind speed and power relation – Power extracted from wind – wind

distribution and wind speed predictions – types of Wind power systems.

Bio mass conversion technologies-Biogas generation-Types of biogas plants-Bio gas from plant wastes-

Utilization of Bio gas and applications.

UNIT IV GEO THERMAL, TIDAL AND OCEAN ENERGY SYSTEMS 9

Geothermal energy – Estimates of Geothermal power- site selection for geothermal power plant- Applications

of Geothermal energy.

Origin of tides – Basic principle of Tidal power- Operation of a Tidal power plant. Ocean Thermal Energy

conversion system- Open and closed OTEC cycles- Prospects of ocean thermal energy conversion in India.

UNIT V EMERGING ENERGY SYSTEMS 9

Magneto Hydro Dynamic (MHD) Power Generation- MHD systems and its operation. Thermo Electric power

generation- Basic principle- Thermo electric power generator.

Thermonuclear fusion energy-Nuclear fusion and reactions- Advantages. Fuel cell- classification of fuel cells-

Fuel cell based electrical power generation scheme- Applications.

Lecture: 45; Tutorial: 0; Total: 45

TEXT BOOKS:

1. Rai, G.D., “Non-Conventional Energy Sources”, Khanna Publishers, Sixth Edition 2017.

2. Khan, B.H, Non- Conventional Energy Resources”, Mc. Graw Hill Education Ltd, third reprint 2017.

REFERENCE BOOK

1. Rao S. Paruklekar,B.B, “Energy Technology – Non Conventional, Renewable and Conventional”,

KhannaPublishers,1994.

2. F.Kreith and J.F.Kreider, “Principles of Solar Engineering”, McGraw Hill.

3. T.N.Veziroglu, “Alternative Energy Sources”, Vol 5 and 6, McGraw Hill.

4. MukundR.Patel, “Wind and Solar Power Systems”, CRC Press LLC.

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PREAMBLE

TO

Innovation, IPR and Entrepreneurship Development

The open elective course syllabus has been framed by Entrepreneurship Development Cell of Sona

College of Technology on above mentioned title for even semester. The course covers a wide range of topics

from Innovation, Intellectual Property Right and entrepreneurial Competitiveness and competency, basic

requirements of setting of an enterprise/startups, factors influencing entrepreneurship, Barriers to

Entrepreneurship & Concepts, Issues of Entrepreneurship Failure, Idea selection, Innovation & creativity,

design thinking.

The course also covers identifying and selecting a good business opportunity, market survey & research,

techno-economic feasibility assessment and preparation of preliminary project reports, management of working

capital, costing, break even analysis, taxation, income tax, GST, provision of incentives, subsidies &

concessions, entrepreneurship finance and angels & ventures capital fund etc. Benefit out of Government

policies to small scale industries and business incubators.

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U15EE1007R INNOVATION, IPR AND ENTREPRENEURSHIP DEVELOPMENT 3 0 0 3

COURSE OUTCOMES

At the end of this course the students will be able to,

Acquire the knowledge for establishment of an enterprise and management,

Derive the innovative ideas, right approach to the problem and arrive solution for problem with IPR and its legal aspects.

Prepare the project report preparation and assessment of Business.

Acquire the knowledge on costing, Techno-economic aspects, find out the sources of finance and opportunities in business.

Identify the support system for Entrepreneurs by Government and venture capitals.

UNIT I ENTREPRENEURSHIP & MOTIVATION 9

Entrepreneur – Types of Entrepreneurs – Difference between Entrepreneur and Intrapreneur Entrepreneurship in

Economic Growth, Factors Affecting Entrepreneurial Growth. Major Motives Influencing an Entrepreneur –

Achievement Motivation Training, Self-Rating, Business Games, Thematic Apperception Test – Stress

Management, Entrepreneurship Development Programs – Need, Objectives.

UNIT II INNOVATION, CREATIVITY, DEVELOPMENT PROCESS AND LEGAL ASPECTS 9

Innovation and Creativity- An Introduction, Innovation in Current Environment, Types of Innovation Sources

of new Ideas, Methods of generating innovative ideas, creating problem solving, product planning and

development process. Legal aspects of business (IPR, Labor law).

UNIT III BUSINESS 9

Small Enterprises – Definition, Classification – Characteristics, Ownership Structures – Project Formulation –

Steps involved in setting up a Business – identifying, selecting a Good Business opportunity, Market Survey

and Research, Techno Economic Feasibility Assessment – Preparation of Preliminary Project Reports – Project

Appraisal – Sources of Information – Classification of Needs and Agencies.

UNIT IV FINANCING AND ACCOUNTING 9

Need – Sources of Finance, Term Loans, Capital Structure, Financial Institution, Management of working

Capital, Costing, Break Even Analysis, Taxation – Income Tax, GST.

UNIT V SUPPORT TO ENTREPRENEURS 9

Sickness in small Business – Concept, Magnitude, Causes and Consequences, Corrective Measures - Business

Incubators – Government Policy for Small Scale Enterprises – Growth Strategies in small industry – Expansion,

Diversification, Joint Venture, Merger and Sub Contracting.

Lecture: 45; Tutorial: 0; Total: 45 Hrs

TEXT BOOKS:

1. Khanka. S.S., “Entrepreneurial Development” S.Chand & Co. Ltd., Ram Nagar, New Delhi, 2013. 99

2. Donald F Kuratko, “Entreprenuership – Theory, Process and Practice”, 9 th Edition, Cengage Learning,

2014.

REFERENCES:

1. Hisrich R D, Peters M P, “Entrepreneurship” 8th Edition, Tata McGraw-Hill, 2013.

2. Mathew J Manimala, "Enterprenuership theory at cross roads: paradigms and praxis” 2 nd Edition Dream

tech, 2005.

3. Rajeev Roy, "Entrepreneurship" 2 nd Edition, Oxford University Press, 2011.

4. EDII “Faulty and External Experts – A Hand Book for New Entrepreneurs Publishers: Entrepreneurship

Development”, Institute of India, Ahmadabad, 1986.

5. Innovation and Entrepreneurship Book by Peter Drucker,

6. James Larminie and John Lowry, “Electric Vehicle Technology Explained “ John Wiley & Sons, 2003.

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Electronics and Communication Engineering

BIOMEDICAL INSTRUMENTATION AND MEASUREMENTS

PREAMBLE

With technology advancing at such a rapid pace, it is no wonder that the developments in science and engineering

are being integrated into the medical sector. Any new knowledge of living systems gained through analytical techniques

based on engineering sciences contributes to the progress of medicine. This integration has given rise to the

interdisciplinary field of biomedical engineering.

Biomedical engineering refers to the field of study that merges biology and engineering. This unique,

interdisciplinary field allows covering a wider range of subjects, where the in-depth understanding of engineering can be

applied to solve medical and biological problems. Biomedical Engineering bridges the gap between engineering and

medicine, seamlessly combining the design and problem solving skills of engineering with medical and biological

sciences in order to improve healthcare diagnosis, monitoring and therapy. This area uses electronics and computer

science to create devices that are used to diagnose and treat diseases.

U15EC1002R BIOMEDICAL INSTRUMENTATION AND

MEASUREMENTS

L T P C

3 0 0 3

COURSE OUTCOMES

At the end of each unit, the students will be able to -

1. Describe the equipments based on medical analysis.

2. Elaborate the measurements on temperature and blood flow.

3. Describe the special features of various types of measuring equipments.

4. Outline the objectives and working principles of the various patients assist equipments.

5. Provide an overview of imaging equipment and computer in medicine.

UNIT

I

RECORDING INSTRUMENTS Electro-Physiology and Bio-Potential Recording the Origin of Bio-Potentials – Bio-

Potential Electrodes – Biological Amplifiers – ECG – EEG – EMG – PCG – EOG –

Lead Systems and Recording Methods – Typical Waveforms and Signal

Characteristics.

9

UNIT

II

MEASUREMENT AND ANALYSIS TECHNIQUE

Bio-Chemical and Non Electrical Parameter Measurement PH – PO2 – PCO2 –

Electrophoresis - Auto Analyzer – Blood Flow Meter – Cardiac Output –

Respiratory Measurement – Blood Pressure –Temperature – Pulse – Blood Cell

Counters.

9

UNIT

III

ASSIST DEVICES

Cardiac Pacemakers – DC Defibrillator – Dialyzer – Heart Lung Machine –

Oxygenators 9

UNIT

IV

PHYSICAL MEDICINE AND BIOTELEMETRY

Diathermies – Shortwave – Ultrasonic and Microwave Type and Their Applications – Surgical Diathermy Telemetry Principles – Frequency Selection – Biotelemetry –

Radiopill

9

UNIT

V

MEDICAL IMAGING AND COMPUTERS IN MEDICINE

Radiological Equipments Ionizing Radiation – Diagnostic X-Ray Equipments – Use

of Radio Isotope in Diagnosis – Radiation Therapy – Patient Care Monitoring

System.

9

Total: 45

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TEXT BOOK

1. Leislie Cromwell, “Biomedical instrumentation and measurement”, Prentice Hall of India,

New Delhi, 2015.

REFERENCE BOOKS

1. Khandpur, R.S., “Handbook of Biomedical Instrumentation”, TATA McGraw-Hill, New Delhi,

2015.

2. Ananda Natarajan.R, “Biomedical instrumentation and measurement”, Prentice Hall of India,

New Delhi, 2015.

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ELECTRONICS AND MICROPROCESSOR

PREAMBLE:

Electronics and Microprocessor has become essential part in the mechanical field. During recent years there has

been significant improvement in the field of robotics and automobile technology. The rapid growth of luxury cars,

robotics which involves many features using electronics and microprocessors. New systems such as GPS, accident

control, auto gear system, and many more features are integrated with vehicles.

The course is related to the development of mechanical and automobile sectors. The semiconductor devices are

used to know the concepts of semiconductor theory and junction diodes. The transistor amplifier and digital electronics

are used to develop the projects in the field of mechanical engineering. Interfacing concepts are used to develop a system

based on the microprocessors. This course will provide important knowledge to graduate students who wish to work in the

field of industrial automation.

U15EC1003R ELECTRONICS AND MICROPROCESSOR L T P C

3 0 0 3

COURSE OUTCOMES

At the end of each unit, the students will be able to -

1. Apply the concepts of semi-conductor diodes and rectifiers.

2. Illustrate the models of transistor and its applications

3. Apply and solve binary number systems and logic gates.

4. Analyze 8085 microprocessor and its instruction sets.

5. Design a microprocessor system using interfacing concepts.

UNIT

I

SEMICONDUCTOR DEVICES

Classification of Solids Based on Energy Band Theory – Intrinsic Semiconductors –

Extrinsic Semiconductors – P type and N type-PN Junction Diode – Forward and

Reverse Bias – Avalanche Breakdown – Zener Diode – Zener Breakdown

Characteristics – Half Wave and Full Wave Rectifiers –Voltage Regulators – IC LM

7805 – LM 317.

9

UNIT

II

TRANSISTOR AMPLIFIERS

Bipolar Junction Transistor – Construction and Characteristics – CB – CE – CC

Configuration – Biasing Circuits –Transistor as a Switch – Concept of Feedback –

Negative Feedback and Positive Feedback – Class A - B and C Amplifiers – UJT-

Construction – Characteristics and Relaxation Oscillator – Application in Temperature

and Motor Speed Control.

9

UNIT

III

DIGITAL ELECTRONICS

Binary Number System – AND – OR – NOT – NAND – NOR – Exclusive OR Gates –

Boolean Algebra and Theorems – Basic Flip Flops (RS, D, JK and T) - Half and Full

Adders – Shift Registers – Counters – Basic A/D and D/A Conversion.

9

UNIT

IV

8085 MICROPROCESSOR

Architecture of 8085 – Pin Configuration – Instruction Set – Addressing Modes –

Simple Programs using Arithmetic and Logical Operations –Introduction to

Microcontroller.

9

UNIT

V

INTERFACING AND APPLICATIONS OF MICROPROCESSOR

Basic Interfacing Concepts – Interfacing of Input and Output Devices – Applications of

Microprocessor Temperature Control – Robotic Arm Controller using Stepper Motors –

Traffic Light Control.

9

Total: 45

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TEXT BOOKS

1. Milman and Halkias, “Integrated Electronics”, 2nd

edition, Tata McGraw-Hill publishers,

2017.

2. Ramesh Goankar, “Microprocessor Architecture, Programming and Applications

with 8085”, 6th edition,Penram International Publishing, 2016.

REFERENCE BOOKS

1. Malvino and Leach, “Digital Principles and Applications”, Tata McGraw-Hill, 2017.

2. Salivahanan S, Suresh Kumar N, Vallavaraj A, “Electronic Devices and Circuits”,

4th Edition, Tata McGraw-Hill, 2017.

3. Mehta V.K, “Principles of Electronics”, S. Chand and Company Ltd.,2016.

4. Dougles V.Hall, “Microprocessor and Interfacing, Programming and Hardware”, Tata

McGraw-Hill, 2017.

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EMBEDDED AND REAL TIME SYSTEMS

PREAMBLE:

Embedded system plays an important role in real-time scenario. It is an electronics and computer system which

is designed to control and access the data. It is a programmable controlled operating system with a dedicated function for

larger mechanical and electrical system.

It is an application specific, custom designed system which have only necessary components and hence

significantly smaller than a regular computer. Embedded Software Engineering is the process of controlling various

devices and machines. The various applications are washing machines, printers, automobiles, cameras, industrial

machines, smart phones etc.

U15EC1004R EMBEDDED AND REAL TIME SYSTEMS L T P C

3 0 0 3

COURSE OUTCOMES

At the end of each unit, the students will be able to -

1. Design hardware and software architecture of an embedded system.

2. Analyse the performance parameters of embedded system

3. Design an embedded system using PIC microcontroller.

4. Design a software architecture using real time operating system tools.

5. Design automatic chocolate vending machine, digital camera, and set-top box using MUCOS.

UNIT

I

ARCHITECTURE OF EMBEDDED SYSTEMS

Introduction – Application Areas – Categories of Embedded System – Specialties of

Embedded System – Recent Trends in Embedded System – Overview of Embedded

System Architecture –Hardware Architecture – Software Architecture – Communication

Software – Process of Generation of Executable Image – Development-Testing

9

UNIT

II

DESIGN AND ANALYSIS OF EMBEDDED SYSTEMS

Embedded System Design Process – Formalism for System Design – Memory System

Mechanism – CPU Performance CPU Power Consumption – CPU Buses – Memory

Devices – I/O Devices – Program Design – Model of Programs – Analysis and

Optimization of Execution Time – Power – Energy – Program Size – Program

Validation and Testing.

9

UNIT

III

PIC MICROCONTROLLER

PIC 16C61 / 71 Microcontroller Architecture – FSR – Reset Action – Oscillatory

Connections – Memory Organizations – Instructions – Addressing Modes – I/O ports –

Interrupts – Timers – ADC.

9

UNIT

IV

REAL-TIME OPERATING SYSTEM CONCEPTS

Architecture of the Kernel – Task and Task Scheduler – Interrupt Service Routines –

Semaphores – Mutex – Mailboxes – Message – Queues – Event Registers – Pipes –

Signals –Timers – Memory Management – Priority Inversion Problem.

9

UNIT

V

REAL-TIME OPERATING SYSTEM TOOLS AND CASE STUDIES

Case Study of Embedded System using MUCOS RTOS – Automatic Chocolate Vending

Machine – Set-Top Boxes – Digital Camera.

9

Total: 45

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TEXT BOOK

1.

Marilyn Wolf, “Computers as Components - Principles of Embedded Computer System

Design”, 4th Edition, Morgan Kaufmann Publisher, (An Imprint from Elsevier), 2016.

REFERENCE BOOKS

1. Ajay V Deshmukh, “Microcontrollers Theory and Applications”, 3rd

Edition Paper back,

Tata McGraw Hill education, 2017.

2. Shibu K V, “Introduction to Embedded Systems”, 2nd Edition, McGraw Hill, 2016.

3. Raj Kamal, “Embedded Systems Architecture Programming and Design” , 3rd Edition, TMH,

2014.

4. Xiaocong Fan, “Real-Time Embedded Systems: Design Prinicple and engineering practices”, SCI-Tech

Connect, Elsevier, 2016.

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SIGNAL AND IMAGE PROCESSING PREAMBLE:

This course is designed pedagogically and uncovers the concepts of two major topics signal and image

processing. The first three units of this course becomes the basis of introducing the students to the concept of

signals, systems and its types, also the method of handling the signals by various mathematical tools. This

course introduces the fundamental principles of signals and system analysis. These concepts form the building

blocks of modern digital signal processing, communication and control systems.

The course will cover various basic tools of signal and system analysis such as signal classification, LTI

systems, Properties of LTI Systems, Z-Transform, Fourier Transform, Discrete Fourier Transform (DFT). The

last two units of this course deals with Digital image processing. Study of these units is motivated by three

major applications. The first application is in improvement of pictorial information for human perception i.e.

enhancing the quality of the image so that the image will have a better look. The second is for autonomous

machine applications which have wider applications in industries, particularly for quality control in assembly

automation and many similar applications.

U15EC1007R SIGNAL AND IMAGE PROCESSING L T P C

3 0 0 3

COURSE OUTCOMES

At the end of each unit, the students will be able to -

1. Perform multiple operations on CT and DT signals and analyse the characteristics of continuous and discrete

time systems.

2. Apply Z transform on DT signals and analyse systems using Z transform.

3. Prove the properties of discrete Fourier transforms and implement DFT using fast Fourier transform.

4. Describe the fundamentals of monochrome and color image processing and analyse the basic relations

between pixels, connectivity and distance measures.

5. Apply image enhancement techniques in spatial and frequency domain.

UNIT

I

CLASSIFICATION OF SIGNALS AND SYSTEMS

Continuous-Time and Discrete-Time Signals – Exponential and Sinusoidal Signals – The Unit

Impulse and Unit Step Functions – Operation of Signals (Time Shifting – Time Reversal –

Amplitude Scaling – Time Scaling – Signal Addition – Multiplications) – Continuous-Time

and Discrete-Time Systems – Basic System Properties (Systems With and Without Memory –

Causality – Stability – Time Invariance – Linearity).

9

UNIT

II

ANALYSIS OF SIGNALS AND SYSTEMS USING Z-TRANSFORM

The Z-Transform – The Region of Convergence for the Z-Transform – The Inverse Z-

Transform Partial Fraction and Long Division Method– Properties of the Z-Transform –

System Function Algebra and Block Diagram Representations – The Unilateral Z-Transform.

9

UNIT

III

DISCRETE FOURIER TRANSFORM AND FFT

Introduction to DFT – Efficient Computation of DFT- Properties of DFT – FFT Algorithms –

Radix-2 FFT Algorithms – Decimation in Time – Decimation in Frequency Algorithms – Fast

Convolution- Overlap Save Method and Overlap Add Method.

9

UNIT

IV

DIGITAL IMAGE FUNDAMENTALS AND TRANSFORMS

Fundamental Steps in Digital Image Processing – Elements of visual perception – Some basic

relationship between pixels – Connectivity – Distance measure – brightness, contrast – hue –

saturation – mach band effect – Image sampling – Quantization – Dither – Colour image

fundamentals RGB – HSI models.

9

UNIT

V

IMAGE ENHANCEMENT

Spatial domain approach – point processing – Image negative – Contrast Stretching – Gray

level slicing – Histogram Equalization – Image addition – subtraction – averaging –

Smoothing Filters – spatial LPF – Median Filter – Sharpening Filters – spatial HPF – High

Boost filter – Derivative filters Frequency domain filters – Homomorphic Filter.

9

Total: 45

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TEXT BOOKS

1. Allan V.Oppenheim, Allan S.Willsky and S.Hamid Nawab, “Signals and Systems”, 2nd

edition Pearson

India, 2015.

2.

John G. Proakis , Dimitris G. Manolakis, “Digital Signal Processing”, Pearson Education, 2002.

3. Rafael C. Gonzalez and Richard E. Woods., “Digital Image Processing”, 4th edition, Pearson, 2017.

REFERENCE BOOKS

1. P.Ramesh Babu, “Digital Signal Processing”,7th edition, Scitech Publications (India) Pvt Ltd, 2017.

2. M .J. Roberts, “Signals & Systems Analysis using Transform Methods & MATLAB”, 3rd

Edition, Tata

McGraw Hill, 2017.

3. Jayaraman S., Esakkirajan & Verrakumar “Digital Image Processing”, 5th Edition, TMH, New Delhi,

2011.

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Computer Science and Engineering

U15CS1001R BIG DATA AND ANALYTICS 3 0 0 3

COURSE OUTCOMES: At the end of the course the students will be able to

Compare and analyze different types of digital data characteristics of Big Data

Implement programs using Hadoop open source software framework

Design and develop programs using NoSQL Databases like Mongo DB and Cassandra

Apply MapReduce programming for various big data based problems.

Implement programs using Hive and Pig Databases UNIT I INTRODUCTION TO BIG DATA 9 Types of Digital Data: Classification of Digital Data Characteristics of Data, Evolution of Big Data, Definition of Big Data, Challenges with Big Data, Characteristics of Big Data ,Traditional Business Intelligence (BI) versus Big Data, A Typical Data Warehouse Environment , A Typical Hadoop Environment. UNIT II BIG DATA ANALYTICS 9 Introduction -Big Data Analytics, Classification of Analytics, Challenges in Big Data, Technologies to handle

Challenges Posed by Big Data- Data Science- Data Scientist, Terminologies Used in Big Data Environments,

Basically Available Soft State Eventual Consistency (BASE), Few Top Analytics Tools.

UNIT III HADOOP 9 Introduction Hadoop, RDBMS versus Hadoop, Distributed Computing Challenges ,History of Hadoop , Hadoop Overview, Use Case of Hadoop ,Hadoop Distributors ,HDFS (Hadoop Distributed File System),Processing Data with Hadoop, Managing Resources and Applications with Hadoop YARN (Yet another Resource Negotiator),Interacting with Hadoop Ecosystem, MapReduce Programming -Mapper, Reducer, Combiner, Partitioner, Searching, Sorting, Compression UNIT IV NO SQL DATABASES 9 Cassandra :Apache Cassandra - An Introduction , Features of Cassandra, CQL Data types, CQLSH, Keyspaces, CRUD (Create, Read, Update and Delete) Operations, Collections, Using a Counter, Time to Live (TTL), Alter Commands, Import and Export, Querying System Tables, Practice Examples- MongoDB, Terms Used in RDBMS and MongoDB, Data Types in MongoDB , MongoDB Query Language UNIT V HIVE AND PIG 9 Hive: Introduction to Hive, Hive Architecture, Hive Data Types, Hive File Format, Hive Query Language

(HQL), RCFile Implementation, SerDe, User-defined Function(UDF).

Pig: Introduction to Pig, The Anatomy of Pig, Pig on Hadoop , Pig Philosophy, Use Case for Pig: ETL

Processing, Pig Latin Overview , Data Types in Pig ,Running Pig , Execution Modes of Pig ,HDFS Commands

,Relational Operators ,Eval Function ,Complex Data Types ,Piggy Bank, User-Defined Functions (UDF)

,Parameter Substitution , Diagnostic Operator , Word Count Example using Pig,Pig versus Hive

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Total: 45 hours

TEXT BOOKS:

1. Big Data and Analytics, Seema Acharya, Subhashini Chellappan, Infosys Limited, Publication: Wiley India Private Limited,1st Edition 2015(Chapters 1,2,3,4,5,6,7,8,9,10)

REFERENCE BOOKS:

1. Hadoop in Practice, Alex Holmes, Manning Publications Co., September 2014, Second Edition.

2. Programming Pig, Alan Gates, O’Reilly, Kindle Publication. Programming Hive, Dean Wampler, O’Reilly, Kindle Publication.

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U15CS1002R CLOUD COMPUTING 3 0 0 3

COURSE OUTCOMES:

At the end of the course the students will be able to

1. Provide an overview of cloud computing

2. Explain the various tasks in developing cloud services

3. Analyze the provision of cloud computing services to different users

4. Configure the various cloud services according to the environment.

5. Analyze various ways to collaborate online

UNIT I Understanding Cloud Computing 6

Cloud Computing – History of Cloud Computing – Cloud Architecture – Cloud Storage – Why Cloud

Computing Matters – Advantages of Cloud Computing – Disadvantages of Cloud Computing – Companies in

the Cloud Today – Cloud Services

UNIT II Developing Cloud Services 10

Web-Based Application – Pros and Cons of Cloud Service Development – Types of Cloud Service

Development – Software as a Service – Platform as a Service – Web Services – On-Demand Computing –

Discovering Cloud Services Development Services and Tools – Amazon – Google App Engine – IBM Clouds

UNIT III Cloud Computing for Everyone 10

Centralizing Email Communications – Collaborating on Schedules – Collaborating on To-Do Lists –

Collaborating Contact Lists – Cloud Computing for the Community – Collaborating on Group Projects and

Events – Cloud Computing for the Corporation

UNIT IV Using Cloud Services 10

Collaborating on Calendars, Schedules and Task Management – Exploring Online Calendar Applications-

Collaborating on Contact Management – Collaborating on Project Management – Collaborating on Word

Processing - Collaborating on Spread sheets- Collaborating on Databases – Storing and Sharing Files

UNIT V Other Ways to Collaborate Online 9

Collaborating via Web-Based Communication Tools – Evaluating Web Mail Services – Evaluating Web

Conference Tools – Collaborating via Social Networks and Groupware – Collaborating via Blogs and Wikis

Total:45 hours

TEXT BOOK:

1. Michael Miller, Cloud Computing: Web-Based Applications That Change the Way You Work and

Collaborate Online, Que Publishing, August 2008.

REFERENCE BOOK:

1. Haley Beard, Cloud Computing Best Practices for Managing and Measuring Processes for On-demand

Computing, Applications and Data Centers in the Cloud with SLAs, Emereo Pty Limited, July 2008.

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U15CS1003R INTERNET OF THINGS 3 0 0 3

PREAMBLE

The “Internet of Things” (IoT) is the network of physical objects or "things" embedded with sensors, actuators,

software, electronics and network connectivity to enable it to achieve greater value and service by exchanging

data between the physical world and computer systems over existing network infrastructure. By connecting

everyday real world objects such as transports, buildings and industrial equipments, IoT guarantees to

revolutionize how we live and work. In the year 2020, it is estimated that approximately 30 billion devices will

be connected in IoT. IoT will drive new consumer and business behavior that will demand increasingly

intelligent industry solutions. It can also help various industries like agriculture, health services, energy,

security, disaster management etc., which need to automate solutions to problems faced through remotely

connected devices.

The Internet of Things involves three distinct stages:

1. The sensors which collect data (including identification and addressing the sensor/device)

2. An application which collects and analyzes this data for further consolidation

3. Decision making and the transmission of data to the decision-making server. Analytical engines, actuators

and Big data may be used for the decision making process.

After completing the course the students will attain the following,

Ability to build real time IoT applications by interfacing the sensors with minimal programming.

Ability to associate sensor networks and communication modules for building IoT systems.

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U15CS1003R INTERNET OF THINGS 3 0 0 3

COURSE OUTCOMES:

At the end of the course the students will be able to

Recall characteristics, physical and logical designs, domains.

Differentiate IoT and M2M and explain IoT design methodology.

Describe the various IoT components.

Design a portable IoT system using Arduino/Raspberry Pi.

Discuss the various applications of IoT.

UNIT I FUNDAMENTALS OF IOT 9

Introduction-Definition and Characteristics of IoT- Physical design- IoT Protocols-Logical design - IoT

communication models, Iot Communication APIs- Enabling technologies - Wireless Sensor Networks, Cloud

Computing, Big data analytics, Communication protocols, Embedded Systems, IoT Levels and Templates -

Domain specific IoTs.

UNIT II M2M AND IOT DESIGN METHODOLOGY 9

IoT and M2M- difference between IoT and M2M - Software defined networks, network function virtualization–

Needs- IoT design methodology

UNIT III IOT COMPONENTS 9

Sensors and actuators - Communication modules - Zigbee- RFID-Wi-Fi-Power sources.

UNIT IV BUILDING IOT WITH HARDWARE PLATFORMS 9

Platform - Arduino/Raspberry Pi- Physical devices - Interfaces - Programming - APIs/Packages

UNIT V CASE STUDY 9

Various Real time applications of IoT- Home automation-Automatic lighting-Home intrusion detection- Cities-

Smart parking-Environment-Weather monitoring system- Agriculture- Smart irrigation.

TOTAL: 45 PERIODS

TEXT BOOK:

1. Arshdeep Bahga, Vijay Madisetti, "Internet of Things-A hands-on approach", Universities Press, 2015.

REFERENCES:

1. Manoel Carlos Ramon, ―Intel® Galileo and Intel® Galileo Gen 2: API Features and Arduino Projects for

Linux Programmers‖, Apress, 2014.

2. Marco Schwartz, ―Internet of Things with the Arduino Yun‖, Packt Publishing, 2014.

3. Adrian McEwen, Hakim Cassimally, “Designing the Internet of Things”, Wiley Publications, 2012.

4. Olivier Hersent, David Boswarthick, Omar Elloumi, “The Internet of Things: Key applications and

Protocols”, Wiley Publications 2nd edition , 2013.

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U15CS1004R MOBILE APPLICATION DEVELOPMENT 3 0 0 3

COURSE OUTCOMES

At the end of the course the students will be able to

Explain development framework and the need for mobile applications.

Develop apps that use Android’s messaging, multitasking, connectivity and media services to design

full-featured apps primarily for mobile devices.

Create applications with clean, effective user interfaces that take advantage of Android’s rich UI

frameworks.

Leverage Android’s effective frameworks and techniques to perform or schedule data retrieval/storage

efficiently in a mobile environment.

Understand the debugging tools in Android Studio and test the execution of a running program to create

more reliable and robust apps.

UNIT I INTRODUCTION 9

Android: An Open Platform for Mobile Development– Android SDK Features- Introducing the development

framework - Standard development environment for Android applications – Creating Your First Android

Application – Types of Android Application- Android Development Tools

UNIT II ANDROID CORE 9

Android Basic Building Blocks - Toast or Snackbar – Notifications – localize an app – Job Scheduler - Android

Application Lifecycle – Activities and their lifecycle

UNIT III USER INTERFACE 9

Introducing Layouts - Intents - Fundamental Android UI Design - Custom View – Recycler View – Menu based

navigation – Drawer navigation

UNIT IV DATA MANAGEMENT 9

Introducing Adapters - Shared Preferences – Working with the file systems: Reading/writing local data,

accessing the Internal File system, Accessing SD card - Introducing Android Databases- Introducing SQLite-

Content Values and Cursors- Working with SQLite Databases

UNIT V DEBUGGING AND TESTING 9

Debugging in Android studio – Fixing issues in Android - fundamentals of testing - JUnit tests - Espresso UI -

writing useful automated Android tests - Monetizing, Promoting, and Distributing Applications

Total: 45 hour

TEXT BOOK

1. Reto Meier, "Professional Android Application Development", 4th

Edition, Wiley, 2014

2. https://developers.google.com/certification/associate-android-developer/study-guide/

REFERENCE

1. Charlie Collins, Michael Galpin and Matthias Kappler, “Android in Practice”, DreamTech, 2012

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U15CS1005R OBJECT ORIENTED PROGRAMMING AND DATASTRUCTURES 3 0 0 3

PREAMBLE

Object-oriented programming (OOP) is a programming language model organized

around objects rather than "actions" and data rather than logic. Historically, a program has been

viewed as a logical procedure that takes input data, processes it, and produces output data.The

programming challenge was seen as how to write the logic, not how to define the data. Object-

oriented programming takes the view that what we really care about are the objects we want to

manipulate rather than the logic required to manipulate them. Examples of objects range from human

beings (described by name, address, and so forth) to buildings and floors (whose properties can be

described and managed) down to the little widgets on a computer desktop (such as buttons and scroll

bars).

Data Structure is a way of collecting and organising data in such a way that we can perform operations on these

data in an effective way. Data Structures is about rendering data elements in terms of some relationship, for

better organization and storage. The course is designed to prepare the students to have fundamental knowledge

on data structures which is an essential skill to work in any IT industry. This course is designed for the students

in non-circuit branches

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U15CS1005R OBJECT ORIENTED PROGRAMMING AND DATASTRUCTURES 3 0 0 3

COURSE OUTCOMES:

At the end of the course the students will be able to

Understand the basic concepts of object oriented programming.

Design program for real time applications using inheritance and polymorphism.

Apply various linear tree data structures in real time applications.

Implement the operations of tree traversals and hashing techniques.

Develop and apply algorithms for real time applications using graphs

UNIT I PRINCIPLES OF OOP 9

Basic Concepts of Object Oriented Programming – Expressions – Control Structures, Functions - Classes and

Objects, Class Members, Access Control, Pointers, Constructors and destructors, parameter passing methods,

Inline functions, static class members, this pointer, friend functions, dynamic memory allocation (new and

delete).

UNIT II INHERITANCE AND POLYMORPHISM 9

Operator Overloading, Inheritance basics, types of inheritance, base class access control, compile time

polymorphism, runtime polymorphism using virtual functions, abstract class, Exception Handling.

UNITIII DATA STRUCTURES 9

Basic data structures, Abstract Data Type, Linear Data Structures- List ADT, Stack ADT, Queue ADT,

Searching techniques-Linear Search, Binary Search.

UNIT IV TREES AND HASHING 9

Basic terminologies, tree traversals, binary trees, binary search tree ADT, Hashing-Introduction –Hashing

Techniques. Priority Queues -Binary heap.

UNIT V: GRAPHS 9

Definitions, Topological sort, shortest path algorithm - Unweighted shortest path, Dijkstra’s algorithm,

Minimum Spanning Tree - Prim’s algorithm, Kruskal’s algorithm – Depth first search – Breadth first search.

TOTAL: 45 HOURS

TEXT BOOKS :

1. Mark Allen Weiss, “Data structures and Algorithms Analysis in C”, 4th Edition, Prentice Hall, 2013.

2. E. Balagurusamy, “Object-Oriented Programming With C++”, 3rd edition, Tata McGraw Hill, 2006.

REFERENCES:

1. Adam Drozdek, “Data structures and algorithms in C++”, 3rd Edition, Cengage Learning, 2013.

2. Langsam, Augenstein and Tanenbaum “Data structures using C and C++”, 2nd Edition, Prentice Hall of

India, 1998

3. Micheal T. Goodrich, Roberto Tamassia, David Mount, “Data Structures and Algorithms in C++”, Wiley

Student edition, John Wiley and Sons, 2009.

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U15CS1006R DATA SCIENCE 3 0 0 3

Preamble

Learn about the need for data science, with emphasis on data; Visualization in data science and

engineering processes; various application of data science

COURSE OUTCOMES

At the end of the course the students will be able to

Comprehend Data science process

Write R Programs for simple application

Apply descriptive statistics to describe various features of data

Perform exploratory data analysis for different models

Implement Statistical models for real time application

UNIT I INTRODUCTION TO DATA SCIENCE 9

What is Data Science? - Big Data and Data Science hype – and getting past the hype - Why now? – Datafication

- Current landscape of perspectives - Skill sets needed -Data science project – Defining the goal - Data collection and management - Modeling - Model evaluation and critique - Presentation and documentation -

Model deployment and maintenance

UNIT II INTRODUCTION TO R 9

R objects and Classes: Vector – List – Factor – Matrix – Array – Dataframe – Manipulating Objects –

Input/output - R Constructs – Functions in R – Charts and Graphs – Hands on practice in R – libraries –

datasets in R

UNIT III DESCRIPTIVE STATISTICS 10

Central tendency – Mean, Median, Mode – Measure of Dispersion: Variance, Standard deviation – Measure of

Shape- Skewness, Kutosis, Percentile – Association analysis: Covariance, Correlation, Types of Correlation:

Pearson Correlation, Spearman Correlation, Kendall Correlation -Populations and samples - Statistical

modeling, probability distributions, fitting a model

UNIT IV EXPLORATORY DATA ANALYSIS 9

Visualization before analysis – Dirty data – Visualizing a single variable – Examining multiple variable – Data

exploration Vs. Presentation - Hypothesis testing – Difference of means – Wilcoson Rank-Sum test – Type I

and Type II errors – Power and Sample size and ANOVA

UNIT V CASE STUDY 8

Clustering - clustering Iris data - Classification - classifying personal income - Regression - Predicting price of

pre-owned cars

Total : 45 Hours

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Text Book

1. Nina Zumel, John Mount, “Practical Data Science with R”, Manning Publications, 2014

2. Tony Ojeda, Sean Patrick Murphy, Benjamin Bengfort, Abhijit Dasgupta, “Practical Data Science

Cookbook”, Packt Publishing Ltd., 2014

Reference

1. Noreen Burlingame and Lars Nielsen, “A Simple Introduction to DATA SCIENCE”, 2012.

2. Mark Gardener, “Beginning R - The Statistical Pr ogramming Language”, John Wiley & Sons, Inc.,

2012.

3. Jure Leskovec, Anand Rajaraman, Jeffrey D. Ullman, “Mining of Massive Datasets”, Cambridge

University Press, 2014

4. http://bigdatauniversity.com

http://www.johndcook.com/R_language_for_programmers.html

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Information Technology

U15IT1001R BASIC DATA STRUCTURES 3 0 0 3

PREAMBLE

The goal of this course is to introduce the concepts of basic data structures and to familiarise with the

implementation issues. The course is designed to prepare the students to have fundamental knowledge on data

structures which is an essential skill to work in any IT industry. This course is designed for the students of non-

circuit branches (Mechanical, Civil and Fashion Technology).

The students will acquire skills to represent real world data and store them in computational devices for further

computations. The students will have hands-on experience in implementing the operations. Today, most of the

applications are available in the digital format. The curiosity of knowing how the information is rendered

digitally is answered in this course. For instance, the students will find the answer of how navigation is

internally implemented by Google maps.

COURSE OUTCOMES

At the end of the course, the student will be able to

1. Explain and implement the operations on simple data structures such as lists

2. Explain and apply the stack data structure

3. Explain and apply the queue data structure

4. Explain and apply tree data structure and hash tables

5. Develop and apply algorithms for real applications using graphs

UNIT I LISTS 9

Mathematical analysis - Abstract Data Types (ADT) – List ADT – array-based implementation – linked list

implementation – doubly-linked lists – circular linked list – Applications.

UNIT II STACK 9

STACK ADT – Array and Linked List Implementation of Stack – Stack Operations – Stack Applications:

Balancing Symbols, Postfix Expression Evaluation, Infix to Postfix Conversion and Function calls.

UNIT III QUEUE 9

QUEUE ADT – Array and Linked List Implementation of Queues – Queue Operations – Circular Queues –

Double ended Queues – Applications of Queues.

UNIT IV TREE STRUCTURES AND HASHING 9 Preliminaries-

Implementation Tree ADT – tree traversals - Binary Tree ADT – expression trees – binary search tree – AVL

trees – Hashing –General idea - Hash function - Separate chaining – open addressing –linear probing.

UNIT V GRAPHS 9

Definitions – Representation of graphs- traversals - breadth-first traversal - Depth-first traversal - shortest-path

algorithms – Dijkstra’s algorithms- minimum spanning tree – Kruskal's algorithms.

Total: 45 hours

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TEXT BOOK

1. M. A. Weiss, “Data Structures and Algorithm Analysis in C”, Second Edition, Pearson Education, 2006.

REFERENCES

1. A. V. Aho, J. E. Hopcroft, and J. D. Ullman, “Data Structures and Algorithms”, Pearson Education,

1983.

2. R. F. Gilberg, B. A. Forouzan, “Data Structures”, Second Edition, Thomson India Edition, 2005.

3. A. M. Tenenbaum, Y. Langsam, and M. J. Augenstein, “Data Structures using C”, Pearson Education,

1998.

4. Sara Baase and A. Van Gelder, “Computer Algorithms”, Third Edition, Pearson Education, 2000.

5. T. H. Cormen, C. E. Leiserson, R. L. Rivest, and C. Stein, "Introduction to Algorithms", Second Edition,

Prentice Hall of India Ltd, 2001.

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U15IT1002R NETWORK ENGINEERING 3 0 0 3

PREAMBLE

The students may have the curiosity to find what made the web pervasive. The

underlying concept which made the Internet a reality is computer networks. The

evolution of Internet started during 1960s by US department of defense. It has now

become the common platform to share information.

This course is designed to enable the learners to understand the basic

principles of networking and in-depth functionalities of each layer in the network.

After the completion of the course, learner will able to comprehend the principles

and concepts of Internet which supports the World Wide Web.

COURSE OUTCOMES

At the end of the course, the student will be able to

1. Describe the structure and organization of computer networks; including the division into network layers,

role of each layer, and relationships between the layers.

2. Explain the basic concepts of link layer properties including error-detection and correction techniques,

multiple access protocols, and characteristics of link layer media.

3. Explain the transport layer concepts and protocol design including connection oriented and connection-less

models, techniques to provide reliable data delivery and algorithms for congestion control and flow control.

4. Explain the network layer concepts and protocol design including datagram forwarding, routing algorithms,

and network interconnections.

5. Explain the basic concepts of application layer protocol design including client/server models, peer-to-peer

models, and network naming.

UNIT I INTRODUCTION 9

Components – Data Representation- Data flow –LAN-WAN-Internet -The OSI Model- TCP/IP – OSI versus TCP model –

Encapusulation and Decapsulation

UNIT II DATA LINK LAYER 9

Link layer addressing – ARP –RARP- Types of Errors- Cyclic Redundancy Check- Check Sum - Stop and wait protocol- stop

and wait automatic repeat request- piggy backing-CSMA, CSMA/CD – IEEE802.3, IEEE802.11

UNIT III NETWORK LAYER 9

Network layer services- packetizing-routing and forwarding-Network layer performances-Delay-Throughput-Packetloss-

Internet Protocol-Datagram Format-Fragmentation-options- Routing Algorithms-Distance Vector Routing- Link state

routing

UNIT IV TRANSPORT LAYER 9

UDP – Services- Application – TCP-Services-features- Segment – Flow control – Error Control – Congestion Control

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UNIT V APPLICATION LAYER 9

Client Server programming – Iterative communication using UDP -Iterative communication using TCP – WWW – HTTP –

FTP – EMAIL

Total: 45 hours

TEXT BOOK

1. Behrouz A. Forouzan, “Data communication and Networking”, Tata McGraw-Hill, 5th Edition 2013.

REFERENCES

1. James F. Kurose and Keith W. Ross, “Computer Networking: A Top-Down Approach Featuring the Internet”,

Pearson Education, 2011.

2. Larry L.Peterson and Peter S. Davie, “Computer Networks: A Systems Approach”, Harcourt Asia Pvt. Ltd., 2nd

edition, 2009.

3. Andrew S. Tanenbaum, “Computer Networks”, Prentice Hall PTR, 4th Edition, 2003.

4. Halsall, Fred, “Computer Networking and Internet”, Pearson Education, 5th edition, 2006.

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U15IT1003R PROBLEM SOLVING TECHNIQUES USING JAVA PROGRAMMING 3 0 0 3

PREAMBLE

The students opting for this course will learn to code in Java and improve the programming and problem-solving

skills. Through this course, the students will acquire appropriate skills to design algorithms as well as develop and debug

programs. We are excited to offer a unique course structure, designed to support learners of different engineering

departments and to fulfill their dreams of pursuing a career in an IT industry.

This course aims to satisfy the curiosity of the learners who wants to know how a ticket is booked in railways, or

how an electricity consumption bill is generated. After the completion of the course, learners will be able to code real

time problems in JAVA programming language.

COURSE OUTCOMES

1. Apply Object Oriented Programming concepts and basic features of Java to write programs for solving

problems

2. Write java programs with objects and classes of java

3. Develop real time systems using java inheritance concepts

4. Build java applications using exceptions and I/O

5. Solve real time problems using java packages and connect java applications with relational databases

using JDBC for storing and retrieving sensitive data

UNIT I INTRODUCTION TO OOP AND JAVA FUNDAMENTALS 9

Introduction to Object Orientation- Need for Object Oriented Paradigm- Characteristics of Object Oriented

Programming - The History and Evolution of Java – An Overview of Java – Java Virtual Machine - Data Types –Variables -

Arrays – Operators- Control Statements - Command Line Arguments

UNIT II OBJECTS AND CLASSES 9

Introducing Classes - Class fundamentals - Declaring Objects – Introducing Methods – Constructors- Parameterized

Constructor – Copy Constructor – this keyword- Method Overloading – Constructor Overloading –Access control – Static

keyword– Nested and Inner classes – Local Inner class

UNIT III INHERITANCE AND INTERFACE 9

Inheritance basics – Types of Inheritance – Super keyword – Method Overriding – Abstract Classes - final keyword-

Interfaces- Default Interface Methods-Use static methods in an interface- Nested interfaces

UNIT IV EXCEPTION HANDLING AND I/O 9

Exception Handling Fundamentals – Exception Types – Uncaught Exception – Using try and catch – Multiple catch

clauses – Nested try statements – throw – throws – finally - finalize method - I/O FileInputStream – I/O

FileOutputStream

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UNIT V PACKAGES AND JDBC CONNECTIVITY 9

Working with predefined and user defined packages - Access Protection – Importing Packages - Basics of JDBC

Connectivity – SQL Queries – create – insert – select - delete – update.

Total: 45 hours

TEXT BOOK

1. Herbert Schildt, “JavaTM

: The Complete Reference”, Ninth Edition, Tata McGraw Hill, 2014.

REFERENCES

1. Cay S. Horstmann and Gary Cornell, “Core Java: Volume I – Fundamentals”, Ninth Edition, Prentice

Hall, 2013.

2. K. Arnold, D. Holmes and J. Gosling, “The JAVA programming language”, Fourth Edition, Addison

Wesley Professional, 2005.

3. Timothy Budd, “Understanding Object-oriented programming with Java”, Third Edition, Addison

Wesley, 2000.

4. C. Thomas Wu, “An introduction to Object-oriented programming with Java”, Fifth Edition, Tata

McGraw-Hill Publishing company Ltd., 2009.

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U15IT1004R PYTHON PROGRAMMING 3 0 0 3

PREAMBLE

Python is an easy to learn, powerful programming language. It has efficient high-level data structures. It

is a simple but effective approach to object-oriented programming. Python’s elegant syntax and dynamic typing,

together with its interpreted nature, make it an ideal language for scripting and rapid application development in

many areas on most platforms. This programming language has become a preferred development technology in

IT industries.

Python can be integrated with many other technologies also. It is rapidly becoming a de-facto language

for data analytics and / or machine learning as many packages are added to perform more complex tasks. This

course aims to teach everyone the basics of programming using Python.

COURSE OUTCOMES

At the end of the course, the student will be able to

1. Write simple applications

2. Develop programs using loops

3. Create applications using functions

4. Develop application using files

5. Create application using Python and MySQL

UNIT I INTRODUCTION 9

The way of programming-What is programming- debugging – formal and natural languages - Python: Features -

Installing - Running – The Basics-variables-Operators and Expressions

UNIT II CONTROL FLOW 9

Control Flow: introduction- if – else – while statement – do while – for loop –break – continue

UNIT III PYTHON FUNCTIONS 9

Sequences: String - List – Tuple – Dictionary - Functions – Function Parameters, Local and Global Variables,

Default Arguments, Keyword Arguments, Return Statements.

UNIT IV PYTHON MODULES, PACKAGES AND FILES 9

Introduction – Byte files – from import – making own modules – Files and Input/Output: File Objects and Built

in functions – Command line Arguments – Packages.

UNIT V PYTHON DATABASE CONNECTIVITY 9

SQL Introduction – simple queries – create - insert – update – delete, MySQL Introduction – connecting python

and MySQL database.

Total: 45 hours

TEXT BOOK

1. Swaroop C N, “ A Byte of Python “, ebshelf Inc., 1st

Edition, 2013.

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REFERENCES

1. Wesley J. Chun, “Core Python Programming”, Pearson, 2nd

Edition, 2006.

2. Allen B.Downey, “Think Python: How to Think Like a Computer Scientist”, O'Reilly Media, 2nd

Edition, 2015.

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U15IT1005R INTRODUCTION TO DATABASE TECHNOLOGY 3 0 0 3

PREAMBLE

The objective of this course is to introduce the concepts of database systems. Any of the digital applications used by the

people be it web applications or mobile applications run with the database in the background. For any e-commerce

application like flipkart or amazon, database is the core requirement. Social media sites like Facebook or Twitter stores

all the content such as user profiles, likes, shares, and messages in the database. All the organizations maintain their

data in the database with lots of security features. Working with a database system is the most important skill needed

by the IT industry.

The course is designed in such a way that the students will acquire necessary skills to store, manipulate and retrieve

data. The students will learn the fundamental concepts of database systems and write queries to manipulate the

database. The students will have hands on experience in working with an open source database management system.

This course is designed for the students of both circuit (EEE, ECE) and non-circuit branches (Mechanical, Civil and Fashion

Technology).

COURSE OUTCOMES

At the end of the course, the student will be able to

1. Comprehend the need, background, architecture and evolution of database management system

2. Construct ER diagrams that capture the requirements of an application and map the ER diagram to relational

databases

3. Write SQL queries to create, maintain, retrieve, manipulate and provide security to databases.

4. Design and evaluate the normality of a logical data model, and correct any anomalies.

5. Summarize the general ideas behind indexing techniques

UNIT I INTRODUCTION 9

Database and Database Users: Characteristics of database approach, Advantages of DBMS Approach, Database

Applications

Database system concepts and architecture: Data models, Schemas, Instance, Three schema architecture and data

independence, DBMS languages, DBMS interfaces, database system Environment

UNIT II ENTITY RELATIONSHIP AND RELATIONAL MODEL 9

ER model: Entity types, attributes, keys,, relationship types, constraints, weak entity, ER diagrams, EER concepts

Relational data model, relational constraints and relational Algebra: Relational model concepts, Relational constraints

and Relational data base schema, update operations, basic Relational algebra operations, additional relational

operations, ER to relational mapping

UNIT III QUERY LANGUAGE 9

SQL: Data definition and constraints, Basic queries, insert, delete, update, Joins, complex queries, views, assertions and

triggers

Database security and Authorization: security issues, grant/revoke privileges, SQL injections

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UNIT IV RELATIONAL DATABASE DESIGN 9

Functional dependencies and normalization: Functional dependencies, Normal forms: 1NF, 2NF, 3NF, Boyce Codd NF,

decomposition

UNIT V STORAGE STRUCTURES AND INDEXING 9

Secondary Storage Devices – Placing file records – Operations on files – unordered files – ordered files - hashing – RAID -

Indexing Structures: Types of Single-Level Ordered Indexes, Multilevel Indexes

Total: 45 hours

TEXT BOOK

1. Ramez Elmasri and Shamkant Navathe, “Fundamentals of Database Systems ”, 6th

Edition, Addison-

Wesley, 2014.

REFERENCES

1. Abraham Silberschatz, Henry F. Korth and Sudarshan. S, “Database System Concepts”, 6th

Edition,

McGraw-Hill, 2016

2. Raghu Ramakrishnan,“Database Management System”, Tata McGraw-Hill Publishing Company, 2003

3. Date. C. J, Kannan. A, Swamynathan. S, “An Introduction to Database Systems”, 8th

Edition, Pearson

Education, 2012

4. Rajesh Narang, “Database Management systems”, PHI Learning pvt. Ltd, New Delhi,2011.

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Fashion Technology

U15FT1001R FUNDAMENTALS OF FASHION DESIGN 3 0 0 3

COURSE OBJECTIVE

To enable students to define and discuss the terms related to fashion, the classification, understanding

and selection of clothing, to grasp the elements of design and principles of design and the portfolio presentation.

COURSE OUTCOMES

At the end of the study of this course the students will be able to,

1. Define and discuss the fashion and related terms and reason for change in fashion and the classification

2. Describe clothing and its purpose, Role of clothing and its status.

3. Describe the selection of clothing for various age groups, Fashion apparel and wardrobe planning.

4. Explain the elements and principles of the design, with the effects in the apparel

5. Bounce out the theme and development of portfolio.

Unit – I Introduction to Fashion 9

Origin of fashion - terms and definitions - reasons for change in fashion - classification of fashion –

Style, Classic, FAD, Trend – theories of fashion – movement of fashion - fashion cycle.

Unit 2 Introduction to Clothing 9

Understanding clothing - Purpose of clothing: protection, modesty, attraction etc - Importance of clothing -

Clothing Culture, Men and Women clothing and ornamentation - Role and status of clothing - Clothing

according to climatic conditions – factors to be considered in the selection of clothing

Unit – 3 Wardrobe planning 9

Selection of clothes

Clothes for children, middle-aged and adults. Types of clothes according to different types of human figure,

Different materials for different clothes, Fabrics and colours suitable for different garments.

Planning for clothing needs: Formal clothing, Clothes for parties, Clothes for sports,

Casual Clothes for casualwear.

Wardrobe Planning: Wardrobe for men and women

Unit – 4 Elements and Principle of Design 9

Elements of Design: Introduction on basics Elements of design - Silhouette, Details, Texture, Color, Lines,

Principle of design: Introduction to principles of Elements of design - Proportion, Balance, Rhythm, Center of

Interest, Harmony

Unit 5 Design and Development 9

Designer boards - Mood board, fabric board, colour board, accessory board. Fashion illustration – head theories,

Illustration techniques – strokes, hatching, shading; Colouring techniques – Medias for colouring. Portfolio

presentation – styles of presentation - Fashion shows.

TOTAL: 45 hours

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TEXT BOOKS

1. Munslow, Janine, McKelvey, Kathryn “Fashion Design Process Innovation and Practice”, 2nd

Edition , wiley , 2012.

2. Nicola White, Ian Griffiths, “The Fashion Business Theory, Practice, Image”, Berg, 2000.

REFERENCES:

1. Sumathi, G.J. “Elements of Fashion and Apparel Design” New Age International Publishers, New Delhi.

2. Kathryn McKelvey “Fashion Source Book” Balckwell Publishing New Delhi.

3. Jane Mills and Janet K.Smith “Design Concepts” Fairchild Publications, New York.

4. Judith Rasband „Wardrobe strategies for women‟, Delmar publishers, London.

5. Jeannette A.Jarnow, Mirianr Guerreiro & Beatrice Judelle, “Inside the fashion business‟ 4th edition Mac

Millan Publishing Company, NewYork.

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U15FT1002R GARMENT EXPORT MERCHANDISING AND DOCUMENTATION

3 0 0 3

COURSE OBJECTIVE

To impart knowledge to the students on garment export merchandising and export documentation procedure.

COURSE OUTCOMES

At the end of the course, the students are able to,

1. Describe the types and functions of merchandising.

2. Explain the principles and techniques of fashion merchandising.

3. Describe the time management concept in merchandising and computer application in merchandising.

4. Explain the facilities available for garment exporters with regard to Govt. assistance and bank finance;

Describe market development assistance and MDF (Marketing Development Fund).

5. Explain the procedures involved to start up a garment unit, export procedures, payment methods and list the

documents connected to exports and INCO Terms connected with garment export.

UNIT I Merchandising 9

Apparel Merchandising: Definition, Functions of merchandising division, Roles and responsibilities of export

merchandiser.

Types of Merchandising: Principles and techniques of apparel merchandising, Retail merchandising, Visual

merchandising; Interfacing merchandising with production.

UNIT II Fashion Merchandising 9

Principles and techniques of fashion merchandising, Components of fashion, principles of fashion, Leaders of

fashion; Foreign fashion markets, Fashion shows, Fashion retailing trends.

UNIT III Merchandising Management 8

Time management in merchandising, Production scheduling, Route card format, Accessories follow up,

Practical check points, Quality assurance, Computer applications in merchandising.

UNIT IV Facilities for Exporters 9

Subsidies to garment exporters, Duty drawback Export finance through banks, Export credit, short term,

medium term and long term credits. Export promotion councils, Export Credit Guarantee Corporation (ECGC),

Export import bank, Market development assistance, TUFS, Apparel parks – Brief outline about SEZs.

UNIT V Export Procedure and Export Documentation 10

Export Procedure: Procedure to start up a (100% EOU) garment unit, Role of Government policies,

Registration of export units (TIN, CST, IEC, and AEPC), INCO terms (FOB, CFR, CIF), Types of payment

methods (D/A, D/P, L/C). Role of forwarding agent.

Export Documentation: Documents connected to exports, Principal documents, auxiliary documents, Pre

shipment documents, Inspection certificates, Customs, Air and sea transport, Insurance, Role of Bankers in

export, Documents for claiming export assistance, Post shipment documents.

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TOTAL: 45 hours

TEXT BOOKS

1. Moore Evelyn C., Path for Merchandising, A Step by Step Approach, Thames and Hudson Ltd., London,

2001,

2. Shivaramu S., “Export Marketing – A practical guide to exporters”, Wheeler Publishing, 1996.

REFERENCE BOOKS

1. Laine Stone and Jean Samples, Fashion Merchandising, McGraw Hill Books, Singapore, 1985.

2. Jeannette Jamow, Kitty G. Dickerson, “Inside the Fashion Business”, Prentice Hall, 1997.

3. KoshyDarlie O., “Effective Export Marketing of Apparel”, Global Business Press, 1996.

4. Hearle J. W. S., Hines T. and Suh. M. (Ed.), “Global Marketing of Textiles” JTI, 1997.

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U15FT1003R GARMENT MANUFACTURING TECHNOLOGY 3 0 0 3

COURSE OBJECTIVE

To impart knowledge to the students on garment manufacturing, pattern making, sewing and garment finishing.

COURSE OUTCOMES

At the end of the study of this course the students will be able to,

1. Explain the different types of pattern making method.

2. Explain the various seams, stitches, needle type and sewing thread.

3. Explain the various garment accessories.

4. Explain the garment quality particulars and method of garment laundering.

5. Discuss the method of overall quality system and finishing of garments.

UNIT-I Basics of Garment Technology 9 Introduction: Anthropometry, Size standardization, mass customization, mass production flow chart.

Garment Production Sequence: Fabric selection, pattern making, grading, marker planning, spreading, cutting

and sewing.

UNIT II Seams, Stitches, Needle and Sewing Threads 9 Seam and Stitches: Classification of seams and stitches, single needle lock stitch machine, parts and

functions.

Needle and Sewing Thread: Needle, functions, special needles, needle size, numbering, needlepoint, sewing

thread construction, material, thread size, sewing thread packages.

Unit-III Garment Accessories 9

Garment add-on: Labels, linings, interlinings, wadding, lace, braid, elastic, hook and loop fastening, shoulder

pads, eyelets and laces, zip fasteners, buttons and other accessories.

UNIT IV Sewing quality Parameters and Garment Laundering 9 Garment Inspection: Raw material, in process and final inspection, needle breakage, strength properties of

apparel.

Laundering and Care Labelling: Dimensional changes in apparel due to laundering, dry cleaning, steaming

and pressing, care labelling of apparel.

UNIT V Quality System and Packing 9

Quality system and Sampling: Quality system (AQL), sampling techniques.

Garment pressing: Pressing types and its equipment.

Final Packing: Packing and special equipment used for packing.

TOTAL: 45 hours

TEXT BOOKS

1. RajkishoreNayak Rajiv Padhye, “Garment Manufacturing Technology” 1st Edition, woodhead

publication, 2015.

2. Ganesan, P., Gopalakrishnan, D., Karthik, T, “Apparel manufacturing technology”, CRC Publication,

2016.

3. Gerry Cooklin, Steven George Hayes, John McLoughlin, Dorothy Fairclough. “Cooklin's Garment

Technology for Fashion Designers”, John Wiley & Sons, 2011.

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REFERENCES

1. EIRI Consultants and Engineers, “Hand book of garment manufacturing technology”, 2017.

2. Janace E. Bubonia, “Apparel production terms and processes”, 2017.

3. Harold Carr, Barbara Latham, “The Technology of Clothing Manufacture”, Wiley, 1994.

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U15FT1004R

TEXTILE FIBRES, YARNS AND FABRICS 3 0 0 3

COURSE OBJECTIVE

To impart knowledge to the students on textile fibres, objectives and principle of various processes and

machineries involved in textile yarn and fabric manufacture and basics of chemical processing of textiles.

COURSE OUTCOMES At the end of the study of this course the students will be able to,

1. Describe the textile terms, classify textile fibres and describe the properties and end uses of textile fibres.

2. Describe the objectives and principles of various processes involved in yarn manufacture.

3. Describe the objectives and principles of various processes involved in woven fabric manufacture and

briefly explain about basic woven fabric structures.

4. Describe the objectives and principles of various processes involved in knitted fabric manufacture, non-

woven fabric manufacture, its applications and briefly explain about basic knitted structures.

5. Explain the grey preparation process, fundamentals of colour, basics of dyeing, dyeing machineries, basics

of printing and finishing techniques.

UNIT I Textile Fibres 9

Definitions: Important terms, fibre, textile fibre, spun yarn, filament yarn, woven fabric, knitted fabric, non-

woven fabric. classification of textile fibres, essential and desirable properties of a textile fibre, physical and

chemical properties of cotton, linen, silk, wool, viscose and polyester fibres. end uses of important textile fibres,

identification of important textile fibres. drawing, heat setting and texturization .

UNIT II Yarn Manufacture 9

Ginning : Objectives.

Blow room: Principle and objectives, purpose of mixing and blending.

Carding: Principle and objectives.

Drawing: Principle and objectives.

Combing: Objectives of combing, differentiation between carded and combed yarns.

Speed frame: Principle and objectives.

Ring frame: principle and objectives. Definition: yarn count and twist, Doubling, TFO, fancy and Lycra yarn production.

UNIT III Woven Fabric Manufacture and Structure 10

Winding: Principle of operation and objective.

Warping: Principle and objective.

Sizing: Principle and objective.

Weaving: Basic principle of fabric formation, general classification of looms and working of plain loom, basics

of primary, secondary and auxiliary motions. Basic details about different types of shuttleless loom.

Elements of woven design: Design, draft, peg plan and repeat.

Construction of Elementary Weaves: Plain weave, twill weave and honey comb weave. terry weave. Brief

study of jacquard design.

UNIT IV Knitted Fabric Manufacture and Non- woven Fabric 8

Knitting: Basic principle of knitting. Comparison of woven and knitted fabrics, basics of weft knitting and

warp knitting, end uses of weft knit and warp knit fabrics.

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Non-Woven Fabric: Definition, principle of non-woven fabric production, process sequence of manufacture of

non-woven fabric, applications of non-woven fabrics.

UNIT V Chemical Processing of Textiles 9

Sequence of processes in chemical processing of textiles, Singeing process, desizing process, scouring process

and bleaching process: objectives.

Dyeing: Basics of different types of dyes, principle of dyeing with direct dyes, acid dyes and disperse dyes.

Dyeing machines: Principles of jet-dyeing machine, soft flow, over flow and jet dyeing machine.

Printing and Finishing: Objective and types of printing, basic principles of calendaring, mercerisation,

sanforising and compacting.

TOTAL: 45 hours

TEXT BOOKS

1. Srinivasamoorthy H. V., “Introduction to Textile Fibres”, The Textile Association India, Mumbai, 1993.

2. Lord P. R., “Yarn Production: Science Technology and Economics”, The Textile Institute, Manchester,

U.K., 1999.

3. Talukdar M. K., Sriramulu P. K. and Ajgaonkar D. B., “Weaving: Machines, Mechanisms,

Management”, Mahajan Publishers Pvt Ltd, 2004.

4. Anbumani N., Knitting-Fundamentals, Machines, Structures and Developments, New Age International

Publishers, 2007.

5. Koushik C. V. and Antao Irwin Josico, “Chemical Processing of Textiles , Grey Preparation and

Dyeing” , NCUTE Publication, New Delhi, 2004.

REFERENCES

1. Mishra S.P., “Fibre Science and Technology”, New Age International Publishers, New Delhi, 2000.

2. Chattopadhyay R. (Ed), “Advances in Technology of Yarn Production”, NCUTE, IIT Delhi, 2002.

3. Lord P. R. and Mohammed M. H., “Weaving: Conversion of Yarn to Fabric”, Merrow Publishing Co.

Ltd., UK, 1998.

4. Spencer D.J., Knitting Technology: A Comprehensive Handbook, Woodhead Publishing Limited,

England, 3rd

Edition, 2001.

5. Shenai V. A., Technology of Textile Processing , Vol. III, IV, V, VII and VIII, Sevak Publications,

Mumbai, 1995.