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SwRI forms joint industry program to investigate safety, longevity of grid-connected energy storage systems

Green Car Congress

Southwest Research Institute (SwRI) has launched a new Joint Industry Program (JIP) to investigate energy storage systems for the grid. Over the course of its life, a grid-connected battery must respond slowly or suddenly, depending on the grid demands. —Jayant Sarlashkar. There is no fee to join the JIP.

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Cornell team suggests engineered bacteria could address current limitations of energy storage technologies

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Raising the penetration of renewable —an intermittent—sources of energy into the grid will require large scale electrical energy storage and retrieval. However, at present, no existing technology provides such storage and retrieval at a low financial and environmental cost.

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NSF awards UCSD team $39M to improve integration of distributed energy resources into grid; EV batteries also

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The major driver for the project is the need to decarbonize the electrical grid, protect it from cybersecurity attacks and make it more resilient. We will be replicating the entire California power grid on one campus. It will also entail the construction of a new energy storage testing facility on the East Campus.

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Faraday Institution to award up to £55M to five consortia for energy storage research

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The ultimate aim of the research is to facilitate improvements in batteries used for transport and other applications such as grid storage with improved performance and cost characteristics. Next generation sodium ion batteries–NEXGENNA.

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False Starts: The Story of Vehicle-to-Grid Power

Cars That Think

In 2001, a team of engineers at a then-obscure R&D company called AC Propulsion quietly began a groundbreaking experiment. They wanted to see whether an electric vehicle could feed electricity back to the grid. The company’s president, Tom Gage , dubbed the system “vehicle to grid” or V2G. In the boom of the 1920s, U.S.

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ORNL demos 20 kW bi-directional wireless charging on UPS PHEV truck; 11" air gap, >92% efficiency

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The system transferred electricity from the power grid to the vehicle battery terminals at more than 92% efficiency. With its bi-directional design, the system also supports use of the vehicle’s batteries for energy storage. ORNL’s bidirectional technology is fully compliant with grid power quality standards.

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Nuvera and DD DANNAR partner to develop mobile fuel cell power for diverse industries

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Use of Nuvera E-Series Fuel Cell Engines on DANNAR's mobile platform is intended to extend the operational range of the DANNAR MPS and introduce clean, safe, and efficient options for remote power for off-road and heavy equipment applications. For high-power applications, multiple engines can be combined. The DANNAR 4.00 The DANNAR 4.00