电动汽车充电对公共低压电网不平衡的影响

Jan Meyer, Stephan Hahle, P. Schegner, Carsten Wald
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引用次数: 32

摘要

电动汽车开始成为我们生活的重要组成部分。德国计划在2020年之前向市场投放100万辆汽车。现在的汽车大多采用单相充电,充电电流高达32A,有时甚至更大。两相充电也在讨论中。电动汽车的不平衡充电不同于其他单相家用负荷(如水锅)的运行,充电时间长,重合率高。因此,不平衡充电可能导致低压电网不平衡现象的增加,特别是在较弱的农村电网中。本文从一些理论和相关标准的概述出发,讨论了5种不同的电动汽车的充电行为,并给出了在选定的低压电网中实际不平衡水平的测量。本文的主要部分是对单相充电电动汽车渗透率增加引起的不平衡的随机模拟。讨论了不同情况下电网利用率取决于充电电流大小的比例,并与等效三相充电的情况进行了比较。文章最后提出了一些建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of electrical car charging on unbalance in public low voltage grids
E-Mobility starts to become an important part of our live. Germany plans to bring 1 million cars into the market until 2020. Nowadays the cars mostly use single phase charging with charging currents up to 32A and sometimes even more. 2-phase charging is also in discussion. Unbalanced charging of electrical cars differs from the operation of other single phase domestic loads (e.g. water cooker) due to the long charging times and the higher coincidence. Therefore unbalanced charging may lead to an increase of unbalance in LV grids, especially in the weaker rural ones. Starting with some theory and an overview of the relevant standards the paper discusses the charging behaviour of 5 different electrical cars and presents measurements of actual unbalance levels in selected LV grids. The main part of the paper illustrates a stochastic simulation of unbalance caused by an increased penetration of single phase charging electrical cars. The ratio of grid utilization depending on the magnitude of charging current is discussed for different scenarios and is compared to the case that equivalent 3-phase charging would be used. The paper concludes with some recommendations.
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