parameters: r0=r1=2cm; r1=r2=2mm; arm length=10cm; l=10cm; calculation vibration system 1.hammer...

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Parameters: R0=R1=2cm; r1=r2=2mm; Arm length=10cm; L=10cm; Calculation Vibration System 1. Hammer moves up and down totally 120 degrees/s. 2. The first level gear rotates 0.33round/s rotational velocity of second level gear1: (0.33round/s)*(2*pi*R0cm/round) / (2*pi*r1 cm/round) = 3.3 round/s 3. rotational velocity of first level gear1 = rotational velocity of first level gear2 = 3.3 round/s 4. rotational velocity of second level gear2 = 3.3round/s*(2*pi*R1cm)/(2*pi*R2cm) = 33round/s AC Generator From the graph, the magnetic flux density B is the magnetic flux density at the coil (vertical level). If the magnet rotates in a constant speed θ= ωt ), induced voltage is (N is number of turns of the coil and S is the area of the coil) Objective: Output power is 50mW Assume the internal resistance and output load Output voltage is: Output current is: Effective voltage generated by the Assume the magnetic flux density B at the coil is Assume the coil is square shape with side length 33mm. The area of coil is: Assume the distance between the magnet and coil is 1mm, Bo=0.1T is the magnetic flux density away from 1mm of the surface of the magnet. The magnetic flux density in the space is inversely proportional to square of the distance from the center of the magnet. Weight of the hammer: Assumption: when the hammer moves up, the magnitude of acceleration is g. The force from human is around 20N. L1=10cm L2=2cm, F- Mg=Ma=Mg, F=2Mg In order to get the same amount of torque at one end. F*L1=2Mg*L1=20N*L2 M=0.2kg=200g Spring: Assumption: S1:S2=1:5; the human stepping frequency= 1Hz K=9.5(N/m) Circuit Design . How device works: •Hammer moves up and down with the movement of human step. •A set of gears rotates with movement of the hammer arm. •AC generator rotates with rotation of gears. •AC generator generates AC current and flows in the circuit. Pedometer-like Electricity Generator Zexi Xu, Abbas Semnani Advisor: Dimitrios Peroulis Team: HANDLE Introduction This project aims to design small- sized energy harvesting device utilizing human walking kinetic energy. It involves four steps including, design the device, calculate the parameters, manufacture the device and test the output power. Original Idea How a pedometer works? 1. Hammer moves down with the movement of human step. 2. The arm of hammer touches the battery and closes the circuit and generates a pulse. 3. The pulse makes a count for the pedometer. 4. Hammer moves up and opens the circuit. Inspiration from the pedometer hammer AC power generator Reference A. Kobayashi, Y. Dohmen. Effect of bright light emitting diode (LED) flashlights and white lines on orientation and mobility performance of persons with sever peripheral field loss—A simulation study. International Congress Series, 2005, 1282:627-630 G. Stetten, D. Shelton, W. Chang, R. Tamburo, V. Chib, A. Cois, R. Hollis, A. Rizzi, L. Lobes, D. Schwatzman. Po-topic IV-16: Progress towards a clinically useful sonic flashlight. Academic Radiology, 2003,10,(8) : When the hammer moves, the DC current goes through load and extra current charges the battery. When the hammer does not move, the battery can be the power supply for the load. Contact: [email protected] V mA R r I E L 2 . 3 ) 50 50 ( * 32 ) ( * ) ( 5 . 4 2 . 3 * 414 . 1 2 max V E E ) sin( 0 t NSB V NSB E 5 . 4 0 max cos 0 B B ) sin( 0 t NSB dt dB NS dt d N dt d 50 r 50 L R V mV PR U L 6 . 1 50 * 50 mA V R U I L 32 50 6 . 1 0 0 4.5 2 33 NSB NSB 0217 . 0 0 NSB ) ( 1 . 0 0 T B B 2 3 2 10 1000 m mm S 217 0217 . 0 0 SB N ) ( 11 . 0 1 2 33 2 33 1 . 0 2 2 0 0 T r r B B M K M T 2 M T S S S K 2 2 ) 2 ( 1 2 1

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Page 1: Parameters: R0=R1=2cm; r1=r2=2mm; Arm length=10cm; L=10cm; Calculation Vibration System 1.Hammer moves up and down totally 120 degrees/s. 2.The first level

Parameters:R0=R1=2cm;r1=r2=2mm;Arm length=10cm;L=10cm;

CalculationVibration System1. Hammer moves up and down totally 120 degrees/s.2. The first level gear rotates 0.33round/s rotational

velocity of second level gear1: (0.33round/s)*(2*pi*R0cm/round) / (2*pi*r1 cm/round) = 3.3 round/s

3. rotational velocity of first level gear1 = rotational velocity of first level gear2 = 3.3 round/s4. rotational velocity of second level gear2 = 3.3round/s*(2*pi*R1cm)/(2*pi*R2cm) = 33round/sAC Generator

From the graph, the magnetic flux density:

B is the magnetic flux density at the coil (vertical level).If the magnet rotates in a constant speed ( θ= ωt ), induced voltage is

(N is number of turns of the coil and S is the area of the coil)• Objective: Output power is 50mWAssume the internal resistance and output load :

Output voltage is:

Output current is:

Effective voltage generated by the generator is:

maximum output voltage is

Induced Voltage is:

From previous calculation, we know that the AC generator rotates at a constant rate of 33 rounds/s

VmARrIE L 2.3)5050(*32)(*

)(5.42.3*414.12max VEE

)sin(0 tNSB VNSBE 5.40max

Assume the magnetic flux density B at the coil is:

Assume the coil is square shape with side length 33mm. The area of coil is:

Assume the distance between the magnet and coil is 1mm, Bo=0.1T is the magnetic flux density away from 1mm of the surface of the magnet.The magnetic flux density in the space is inversely proportional to square of the distance from the center of the magnet.

Weight of the hammer:

Assumption: when the hammer moves up, the magnitude of acceleration is g. The force from human is around 20N. L1=10cm, L2=2cm, F-Mg=Ma=Mg, F=2Mg In order to get the same amount of torque at one end. F*L1=2Mg*L1=20N*L2 M=0.2kg=200gSpring:Assumption: S1:S2=1:5; the human stepping frequency= 1Hz

K=9.5(N/m)Circuit

Design .

How device works: •Hammer moves up and down with the movement of human step.•A set of gears rotates with movement of the hammer arm.•AC generator rotates with rotation of gears.•AC generator generates AC current and flows in the circuit.

Pedometer-like Electricity Generator Zexi Xu, Abbas Semnani Advisor: Dimitrios Peroulis Team: HANDLE

Introduction This project aims to design small-sized energy harvesting device utilizing human walking kinetic energy. It involves four steps including, design the device, calculate the parameters, manufacture the device and test the output power.

Original Idea • How a pedometer works?

1. Hammer moves down with the movement of human step.

2. The arm of hammer touches the battery and closes the circuit and generates a pulse.

3. The pulse makes a count for the pedometer.4. Hammer moves up and opens the circuit.• Inspiration from the pedometer

hammer

AC power generator

cos0BB

)sin(0 tNSBdt

dBNS

dt

dN

dt

d

50r 50LR

VmVPRU L 6.150*50

mAV

R

UI

L

3250

6.1

ReferenceA. Kobayashi, Y. Dohmen. Effect of bright light emitting diode (LED) flashlights and white lines on orientation and mobility performance of persons with sever peripheral field loss—A simulation study. International Congress Series, 2005, 1282:627-630 G. Stetten, D. Shelton, W. Chang, R. Tamburo, V. Chib, A. Cois, R. Hollis, A. Rizzi, L. Lobes, D. Schwatzman. Po-topic IV-16: Progress towards a clinically useful sonic flashlight. Academic Radiology, 2003,10,(8) : 959 0 04.5 2 33NSB NSB 0217.00 NSB

)(1.00 TBB

232 101000 mmmS 2170217.0

0

SB

N

)(11.01

233233

1.0

2

2

00 Tr

rBBM

K

MT 2 M

TS

SSK

2

2)2(

1

21

When the hammer moves, the DC current goes through load and extra current charges the battery. When the hammer does not move, the battery can be the power supply for the load.

Contact: [email protected]