用实际驱动和变压器负荷数据检验电动汽车并网

F. Erden, M. Kisacikoglu, Ozan Gurec
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引用次数: 20

摘要

日益增长的环境问题和油价的上涨将在不久的将来导致电动汽车(ev)的扩散。电动汽车数量的增加,虽然为交通需求提供了绿色和廉价的解决方案,但可能会对公用电网的运行造成限制,这应该进行调查。本文不采用随机分布的出行特征,而是从乘用车车主的个人数据跟踪装置中收集真实的用户驾驶信息。首先对收集到的出行数据进行分析,生成基于到家时间和荷电状态(SOC)水平的出行特征统计模型。将所得模型应用于不同电动汽车渗透水平的实际电网中,仿真分析了电动汽车整合对电网的影响。为此,本文采用了ba肯特配电有限公司提供的真实配电变压器数据。与假设随机情景的研究相比,所提出的方法产生的结果更加真实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Examination of EV-grid integration using real driving and transformer loading data
The growing environmental concerns and the increase in oil prices will lead to the proliferation of electric vehicles (EVs) in the near future. The increase in the number of EVs, while providing green and inexpensive solutions to transportation needs, may cause constraints on the operation of the utility grid that should be investigated. In this paper, the real user driving information is collected from individual data tracking devices of passenger vehicle owners instead of assuming randomly distributed trip characteristics. The collected trip data are first analyzed to generate a statistical model of the trip characteristics in terms of home arrival times and state of charge (SOC) levels. The resulting model is then used to simulate and analyze the impact of EV integration in a real grid with different EV penetration levels. For this, real distribution transformer data provided by Başkent Electric Distribution Co. is used. The proposed method produces more realistic results in comparison to the studies assuming random scenarios.
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