Advanced power electronics interfaces for distributed energy by Bernard G Treanton; National Renewable Energy Laboratory

By Bernard G Treanton; National Renewable Energy Laboratory (U.S.); et al

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3. Improve cost and functionality of components to integrate demand response, distributed generation, and electricity storage into the system. 4. Improve security and reliability of electricity system. 5. Support improvement of tariffs and regulations for demand response, distributed generation, storage, and renewables. 6. Facilitate transmission siting process. 7. Develop knowledge base for future decision-making and informed delivery, integration, and infrastructure policy relative to electricity.

Us Vaughn, Amy NREL 1617 Cole Blvd. gov Steeley, William EPRI Research Institute 3420 Hillview Ave. , Innovation Center 4201 North 27th St. edu Wang, Warren Navigant Consulting One California Plaza, 300 S. Grand Ave. com Zolot, Matthew UQM Technologies Inc. com 32 Appendix C. S. Department of Energy Dr. S. Department of Energy’s Energy Storage and Power Electronics Research Program in the Office of Electricity Distribution and Energy Reliability. The program funds work on a variety of technologies, such as advanced batteries, flywheels, supercapacitors, and power electronics.

3 ESI Strategic Objectives Aligned with Policy Drivers IEPR, EAP, California Solar Initiative, RPS all identify needs that ESI is focused on finding solutions for. Integrated Electricity System that is Reliable and Secure PIER Strategic Objectives 1. Enable optimal integration of renewables, distributed generation, demand response, and storage to the power system. 2. Improve capacity, utilization, and performance of transmission and distribution system. 3. Improve cost and functionality of components to integrate demand response, distributed generation, and electricity storage into the system.

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