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Energy Storage Applications at AEP

Energy Storage Applications at AEP. Emeka Okafor American Electric Power Presentation to SouthWest Electric Distribution Exchange May 7, 2009. Outline:. Challenges facing utilities Energy storage to turn some of these challenges into opportunities

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Energy Storage Applications at AEP

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  1. Energy Storage Applications at AEP Emeka Okafor American Electric Power Presentation to SouthWest Electric Distribution Exchange May 7, 2009

  2. Outline: Challenges facing utilities Energy storage to turn some of these challenges into opportunities Energy storage deployment examples at AEP AEP taking deployment of energy storage to the next level

  3. Challenges to the Utility Business • Customer-controlled renewable DG on AEP grid has grown from 1kW to 1MW in a decade. It is expected to exceed 1GW in the next decade. • Customer renewable DG is intermittent, often not available when needed and out of utility control. • Utilities need a buffer between customer-controlled DG and electric grid. • Increasing demand for improved service quality and reliability • PHEV load (grid impact)

  4. Converting Challenges to Opportunities Energy Storage: • Buffers between unpredictable customer generation and grid • Decouples load from generation • And offers other benefits as well …

  5. Tyler Mountain Feeder 46 kV bus 12 kV bus North Charleston Feeder 46kV/12kV Transformer 12/16/20 MVA Voltage Regulator West Washington Feeder 2006 - Battery in a Substation for Capital Deferral • Installed 1MW, 7.2 MWhof NAS battery on a feeder to defer building a new substation for three years • Daily Peak Shaving –summer • Three years of operation

  6. Peak shaving (load leveling).

  7. Increased Reliability with Dynamic Islanding(Backup Power) for new installations • Three installations (2008): • Churubusco, IN (2MW, 14.4MWh) • Bluffton, OH (2MW, 14.4MWh) • Milton, WV. (2MW, 14.4MWh) • Loss of power. • Pick up island. • Power electronics and communication. • Return load to grid when fault is cleared.

  8. 2008 Projects – To ImproveService Reliability • 2MW, 14.4 MWh in Bluffton, Ohio • Two other identical sites in West Virginia and Indiana (2008) • All with dynamic islanding

  9. 2008 Projects – To ImproveService Reliability 2MW, 14.4 MWh in Churubusco, IN 2MW, 14.4 MWh in Milton, WV

  10. Load Following - with new battery installations.

  11. Benefit of Islanding – How many hours of backup power is needed? 7 hours of backup power will ensure that over 95 percent of AEP Ohio customers will not experience an outage. Assumption: excludes traditional major events and momentary outages.

  12. East Busco Station Battery Islanding Zones.

  13. System Normal :Grid connected. Battery disconnected.

  14. Fault at F8; loss of grid power. All reclosers and switches in the island open.

  15. Battery picks up island based on last load information.

  16. Grid power restored.

  17. Battery disconnected. Load connected back to the grid.

  18. Building on Success … • AEP is very pleased with the performance of its substation batteries … • But we need to get MORE out of energy storage: • More value to our customers • Better cost by leveraging the electric transportation • Better fit into Smart Grid, the way of future utilities

  19. Community Energy Storage (CES) CES is a small distributed energy storage unit connected to the secondary of transformers serving a few houses or small commercial loads for: • Uses New or Used PHEV batteries – Low Cost • Offers All Values of Substation Batteries when aggregated, • Offers Backup Power to customers • Buffers Customer Renewable Generation • Makes PHEV Charging Time an irrelevant issue

  20. Value Associated with Storage Locations on the Grid 120/240 V 480 V 765 kV 4 to 34 kV 345 kV 138 kV 69 kV CES (Community Energy Storage) NAS (Substation Battery) Storage Value • Devaluators: • Limited Value to Customer • High Security Risk • Does not remove Grid Constraints • Devaluators: • Aesthetics • O&M? Central Generation Load Distribution circuits appear to offer most value for hosting storage

  21. CES Key Functions • Local Controls/Benefits: • 1) Backup power for the local need of the few houses connected to it • 2) Voltage correction • Grid Controls/Benefits: • 3) Load Leveling based on substation and grid needs • 4) Power Factor Correction • 5) Ancillary services through further aggregation at the grid level

  22. Advantages of Using PHEV Battery • Safe for public deployment • Low cost • - Fierce global competition • - US national priority • - Option to use used PHEV batteries • Compact • Reliable • Efficient • Wide operating temperature • Easy recycling & lower environmental issues

  23. Advantages of CES to Substation Battery Higher electric service reliability to customers Easier installation (a 240 V appliance) Easier maintenance (lower required skills) More likely to be a standardized commodity Unit outage is less critical to the grid (smaller) Lower resistive loss in wires (closer to customer) A better fit into the Smart Grid programs

  24. CES Key Specifications Most common distribution transformer size in AEP is a 25kVA unit that serves 3-5 houses.

  25. CES Cost Forecast PHEV, and its battery development, is a US National Priority as well as having extensive global competition Pending the successful market penetration of PHEV, CES cost forecast over the next five years is: • $1000 /kW Commodity Pricing will keep this number low or • $500 /kWh PHEV penetration will push this number down

  26. Utility OperationsCustomer Premise Customer Portal or Meter LG Electronics PHEV Distribution Operations Adapted from EPRI source image Putting It Together on Distribution

  27. 2015 and Beyond Putting It All Together - The Virtual Power Plant

  28. Conclusions. • Energy Storage will be essential to meet the needs of the future grid. • AEP has shown success with the use of NAS substation battery. • AEP sees greater value to using Community Energy Storage to meet these new demands.

  29. 2015 and Beyond Questions?

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