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Technology solutions to mitigate electricity cost for electric vehicle DC fast charging

机译:降低电动汽车直流快速充电用电成本的技术解决方案

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Widespread adoption of alternative fuel vehicles is being hindered by high vehicle costs and refueling or range limitations. For plug-in electric vehicles, direct-current fast charging (DCFC) is proposed as a solution to support long-distance travel and relieve range anxiety. However, DCFC has also been shown to be potentially more expensive compared to residential or workplace charging. In particular, electricity demand charges can significantly impact electricity cost for fast charging applications. Here we explore technological solutions that can help reduce the electricity cost for electric vehicle fast charging. In particular, we consider thousands of electricity rates available in the United States and real-world vehicle charging load scenarios to assess opportunities to reduce the cost of DCFC by deploying solar photovoltaics (PV) panels and energy storage (battery), and implementing a co-location configuration where a DCFC station is connected to an existing meter within a commercial building. Results show that while the median electricity cost across more than 7000 commercial retail rates remains less than $0.20/kWh for all charging load scenarios considered, cost varies greatly, and some locations do experience significantly higher electricity cost. Co-location is almost always economically viable to mitigate fixed cost and demand charges, but the relative benefit of co-locating diminishes as station size and utilization increase. Energy storage alone can help mitigate demand charges and is more effective at reducing costs for "peaky" or low-utilization loads. On the other hand, PV systems primarily help mitigate energy charges, and are more effective for loads that are more correlated with solar production, even in areas with lower solar resource. PV and energy storage can deploy synergistically to provide cost reductions for DCFC, leveraging their ability to mitigate demand and energy charges.
机译:高昂的车辆成本,加油或行驶里程限制阻碍了替代燃料汽车的广泛采用。对于插电式电动汽车,提出了直流快速充电(DCFC)作为解决方案,以支持长途旅行和缓解范围焦虑。但是,与住宅或工作场所的充电相比,DCFC的价格也可能更高。特别是,电力需求收费会严重影响快速充电应用的电力成本。在这里,我们探索可以帮助降低电动汽车快速充电的电力成本的技术解决方案。特别是,我们考虑了美国提供的数千种电价以及现实世界中的车辆充电负载场景,以评估通过部署太阳能光伏(PV)面板和储能(电池)并降低能源成本(DC)来降低DCFC成本的机会。位置配置,其中DCFC站连接到商业建筑物内的现有仪表。结果表明,在考虑所有充电负荷的情况下,超过7000个商业零售价的电费中位数仍低于$ 0.20 / kWh,但成本差异很大,并且某些地区的电费确实更高。主机代管在经济上几乎总是可行的,以减轻固定成本和需求费用,但是主机代管的相对利益随着站点规模和利用率的增加而减小。单独的能量存储可以帮助减轻需求费用,并且在降低“峰值”或低利用率负载的成本方面更有效。另一方面,光伏系统主要有助于减轻能源费用,即使在太阳能资源较少的地区,光伏系统也能更有效地应对与太阳能生产相关的负荷。光伏和能源存储可以协同部署,以利用DCFC减轻需求和能源费用的能力来降低成本。

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