7.3_schneider electric_barton_epri/snl microgrid symposium
TRANSCRIPT
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Advanced* MicrogridBattery Anchor
CapEx project Oncor 1.25 MW
Ameren 1.5 MWMiramar 6.5 MW ?
Shell ET 1.0 MW
MCLB Albany 12.5 MWFord DBOOM 25 MW
Advanced* MicrogridCHP / Rotating Machine Anchor
Costa Mesa BESS1 MW / 2 MWhShedd Aquarium1 MW / 0.5 MWh
Stub Hub1 MW / 2 MWh
Traditional MicrogridNo Inverters
Omohundro Water Plant 10 MWWhite Sands Missile Range 10MWState Department Missile System x21.5 MW each ?
OpEx project“as a service”
MOCO Public Safety 3 MWMOCO Correctional 1 MW
Fairfield Public Works 2 MW
Fairfield Public Safety 1 MW
* Advanced Microgrids include Inverters NAM Microgrid projects are based on:• IEEE 1547 Interconnection Standards• IEEE 2030 Interoperability Standards
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• Our primary competitors are also pursuing Microgrids and DERs • If we are successful in Microgrids in NAM, SE will be able to take market share• To accelerate growth, we need more Repeatable, Modular, Scalable solutions
How do we best accelerate SE Microgrid success?
Microgrids and DERs are experiencing significant growth rates
Efficiency gains for SE and MGCC from Use Cases & Standardization
Benefits of Use Cases & Standardization repeatabilitystreamline
proposal processreduced
engineeringreduced field
commissioningdocumentation
& support
Custom Engineered / Brownfield upgrades No No No No No
Pre-engineered Modular systems design Partial Yes Yes Yes Yes
Load management algorithmns Partial Yes Yes Yes Yes
Repeatable generation templates Yes Yes Yes Yes Yes
DER Optimization software Yes Yes Yes Yes Yes
Open Automation Standard IEC 61850 Yes Yes Yes Yes Yes
Open Interoperability Standard IEC 2030 Yes Yes Yes Yes Yes
Open Interconnection Standard IEC 1547 Yes Yes Yes Yes Yes
Reference Design Modeling & Simulation Yes Yes Yes Yes Yes
Modular Component Assembly Testing Yes Yes Yes Yes Yes
Standard Microgrid SCADA configuration Partial Partial Partial Partial Partial
Cybersecurity for Microgrid Partial Partial Partial Partial Partial
Long term Service and Support Partial Partial N/A N/A Yes
• Repeatable modules require less engineering, implementation and testing
• Shorting project cycles - Faster Turnkey Project
• High system quality and functional assurance from system simulation & test
• Improved project confidence with less risk
• Flexible to be more easily reconfigured to reflect changing generation & load assets
• Easier to troubleshoot
• More efficient system support documentation & training
• Single point of responsibility
• Turnkey and full life-cycle support
Benefits of Use Cases and Standardization
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• We need to identify Use Cases that can be utilized by multiple Customers
• Global Offer Development team will be working with NAM MGCC to standardize
In the center of the bullseye – Microgrid as a Service
Repeatable, Modular, and Scalable
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• This Customer-facing example is a Large Data Center reference design from ITB
An example System that is similar to the application
Reference Designs
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Example of Reference Design from Global Team
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• Identify Use-Cases that we can serve up / prioritize with Global Development team– Microgrid control algorithm / applications
– DSO functionality that would appeal to multiple user segments
– Identify solutions and DER technology partners for common Use-Cases
Repeatable, Modular, Scalable
What can you do to help?
SeamlessIslanding
BlackStart
Frequency & Voltage Control
SystemBalancing
Renewableoptimization
Least Cost
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• Please report significant competitor actions or intelligence– New products, marketing, partnerships, key projects, gaps, and failures
Repeatable, Modular, Scalable – in the MGaaS bullseye
What can you do to help?