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Wind-to-Hydrogen Tech Goes to Sea

Cars That Think

Wind and solar parks produce a large portion of their energy. Then, as now, wind farms are operating off the world’s coasts—but not all of these offshore sites are connected to the mainland via underwater power cables. Some of the wind farms instead sit in clusters more than 100 kilometers out at sea.

Wind 92
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Highview Power and Encore Renewable Energy to co-develop the first long-duration, liquid-air energy storage system in US

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When electricity is in high demand and more valuable, the pressurized gas is allowed to warm, turning a turbine as it expands and thus generating energy that can be used at peak times when the sun is not shining and the wind is not blowing.

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Audi opens 1.9 MWh battery storage unit on EUREF Campus in Berlin

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MWh and uses used lithium-ion batteries from development vehicles to test various interaction scenarios between electric cars and the power grid. This would allow charging with solar or wind power, depending on what is available. The Audi storage unit has a capacity of 1.9 The Mobility House) on such applications.

Audi 287
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This Dutch City Is Road-Testing Vehicle-to-Grid Tech

Cars That Think

Unlike those you may have grown accustomed to seeing, many of these stations don’t just charge electric cars—they can also send power from vehicle batteries to the local utility grid for use by homes and businesses. Debates over the feasibility and value of such vehicle-to-grid technology go back decades.

Grid 90
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Stanford study quantifies energetic costs of grid-scale energy storage over time; current batteries the worst performers; the need to improve cycle life by 3-10x

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A plot of ESOI for 7 potential grid-scale energy storage technologies. Benson from Stanford University and Stanford’s Global Climate and Energy Project (GCEP) has quantified the energetic costs of 7 different grid-scale energy storage technologies over time. Credit: Barnhart and Benson, 2013. Click to enlarge. A new study by Charles J.

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Cree and ABB partner on silicon carbide high-power semiconductors

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and ABB’s Power Grids business are partnering to expand the rollout of silicon carbide in the rapidly-growing high-power semiconductor market. Cree’s products will be included as part of ABB’s power semiconductor product portfolio, across power grids, train and traction, industrial and e-mobility sectors.

Power 186
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M5BAT 5MW storage system integrates multiple battery technologies

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The first phase of the project will focus on: Integration of renewable energy sources and testing of a decentralized supply of control power to stabilize grid operation; and. The Institute of Power Systems and Power Economics at RWTH Aachen University (IAEW) will provide research support for the project.

Batteries 290