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Siemens, Duke Energy and Ford demonstrate lower cost home smart charging technology for plug-ins; due on market next year

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Siemens Energy Management Division has teamed with Duke Energy and Ford to demonstrate the results of an 18-month effort to reduce the cost and expand electric vehicle charging technologies. In March of 2012, the DOE awarded Siemens a grant to develop a low cost Smart Grid Capable EVSE. In 2012, Siemens was awarded $1.6

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Opinion: Reinventing fuel-based power for a more secure and resilient grid

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But, to solve the week-by-week or season-by-season variations with batteries is to follow the same route as a 100% wind and solar powered grid. Again, to scale battery storage to store the weeks and weeks of power needed to balance the grid in those situations would result in huge infrastructure requirements.

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US DOE Selects 43 Projects for $92M in ARPA-E Funding; 3 on Automotive Power Electronics

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The awards in this tranche focus on power electronics, grid-scale energy storage, and building efficiency; of the 43, three are categorized specifically for the automotive market—power electronics projects led by HRL Laboratories, LLC; Arkansas Power Electronics International, Inc.;

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Ford unveils first vehicle to grid communication system

Green Cars News

An intelligent vehicle-to-grid communications and control system for its plug-in hybrid electric vehicles that “talks” directly with the nation’s electric grid has been unveiled today courtesy of carmaker, Ford. The first of the specially equipped plug-in hybrids has been delivered to American Electric Power of Columbus, Ohio.

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ARPA-E awards $35M to 12 new projects to support medium-voltage devices for grid, industry and transportation

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Medium-voltage DC circuit breakers could enable significant improvements in the United States’ electrical system, transforming how electricity is delivered and managed across the entire power grid, as well as critical applications in industry, transportation, and resource production.

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ARPA-E announces $27M for transformational power electronics technologies

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On a large scale, high-power electronics are used to connect solar panels and wind turbines to the grid, to operate industrial equipment such as elevators and HV/AC systems, and to run electric and hybrid-electric vehicles. High Quality, Low-Cost GaN Single Crystal Substrates for High Power Devices.

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ARPA-E awards $37M for IONICS projects; improving solid-state batteries and fuel cells

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Solid ion conductors made of affordable, easily produced materials could replace today’s mostly liquid electrolytes and expensive fuel cell parts, helping create a next generation of batteries and fuel cells that are low-cost, durable, and more efficient. Selective and low-cost separators for batteries with liquid reactants.

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