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MIT team studies grid impacts of concentrated highway EV fast charging

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Researchers at the MIT Energy Initiative have investigated the grid impacts of scaled up highway fast-charging (HFC) infrastructure by using an operations model of the 2033 Texas power grid with uniquely high spatial and temporal resolution. Mowry, Dharik S. Mallapragada (2021). 2021.112508.

MIT 199
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Liquid Metal Battery Corp secures patent rights from MIT

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Liquid Metal Battery Corporation (LMBC), a Cambridge, Massachusetts company founded in 2010 to develop new forms of electric storage batteries that work in large, grid-scale applications, has secured the rights to key patent technology from MIT. Sadoway and Bradwell, along with Dr. Luis Ortiz, are founders of LMBC.

MIT 210
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False Starts: The Story of Vehicle-to-Grid Power

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It occurred in the wake of the California electricity crisis of 2000 and 2001, when mismanaged deregulation, market manipulation, and environmental catastrophe combined to unhinge the power grid. AC Propulsion’s president, Tom Gage, explains the company’s vehicle-to-grid technology at a 2001 conference in Seattle.

Grid 136
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MIT team calls initial performance results of magnesium-antimony liquid metal battery “promising”

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Sectioned Mg||Sb liquid metal battery operated at 700 °C showing the three stratified liquid phases upon cooling to room temperature. Large-scale energy storage is poised to play a critical role in enhancing the stability, security, and reliability of tomorrow’s electrical power grid, including the support of intermittent renewable resources.

MIT 301
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ChargePoint’s roadmap: EV charging 80% home/work, 20% public/fast, “virtual batteries” for utilities

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ChargePoint’s stance is bolstered by a new MIT study that suggests , in part, that electric cars that plug into the grid, could, collectively, act as a massive “virtual battery” for grid energy storage. MIT: Utilities and the virtual battery. ChargePoint envisions that at scale—i.e.,

Charging 150
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ARPA-E awards $175M to 68 novel clean energy OPEN 2021 projects

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By enabling effective stationary and dynamic wireless charging of EVs, this project has the potential to drastically reduce the need for expensive and bulky on-board batteries, enable unlimited range, and accelerate EV penetration. 8" GaN-on-Si Super Junction Devices for Next Generation Power Electronics - $4,521,601.

Clean 284
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DOE ARPA-E awards $156M to projects to 60 projects to accelerate innovation in clean energy technologies

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Concentrating Solar Power/Nuclear: Novel Tuning of Critical. Fluctuations for Advanced Thermal Energy Storage NAVITASMAX will develop a novel heat storage method for. energy density over existing systems by an order of. coupled with novel thermal energy storage technology, which. storage material.

Energy 294