首页> 外文会议>Innovative Smart Grid Technologies (ISGT), 2012 IEEE PES >A detailed analysis of the effective-load-carrying-capacity behavior of plug-in electric vehicles in the power grid
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A detailed analysis of the effective-load-carrying-capacity behavior of plug-in electric vehicles in the power grid

机译:插电式电动汽车在电网中的有效承载能力行为的详细分析

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We performed a study of plug-in electric vehicle (PEV) vehicle-to-grid (V2G) operations to characterize the behavior of effective load carrying capacity (ELCC) contributed by the PEVs. We leveraged the V2G simulation framework developed and used wider data sets in this study to perform a broader and deeper analysis. Key steps undertaken were: (1) Compute grid reliability for a wide range of PEV fleet sizes. (2) Identify optimal numbers of PEV fleet sizes for different levels of V2G ELCC. (3) Run stress tests with high levels of PEV penetration and expected V2G ELCC to identify boundaries of safe operations. We observed that, for New York City, up to 10% of peaking capacity can be safely contributed by the PEVs at PEV penetration levels around 50% representing an economic benefit of SllOMM per year. PEV charging safety is not found to be an issue for up to about 87.5% penetration.
机译:我们对插电式电动汽车(PEV)的车辆到电网(V2G)操作进行了研究,以表征由PEV贡献的有效负荷能力(ELCC)的行为。我们利用开发的V2G模拟框架并在本研究中使用了更广泛的数据集来进行更广泛和更深入的分析。采取的关键步骤包括:(1)计算各种PEV车队规模的电网可靠性。 (2)确定不同级别的V2G ELCC的PEV车队规模的最佳数量。 (3)以高水平的PEV渗透和预期的V2G ELCC运行压力测试,以识别安全操作的边界。我们观察到,对于纽约市而言,在PEV渗透水平约为50%的情况下,PEV可以安全地贡献高达10%的峰值容量,这代表了SllOMM每年的经济利益。 PEV充电安全性最高可达约87.5%的渗透率。

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