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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >Increasing electric vehicle hosting capacity and equality for fast charging stations using residential photovoltaics in medium‐ and low‐voltage distribution networks
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Increasing electric vehicle hosting capacity and equality for fast charging stations using residential photovoltaics in medium‐ and low‐voltage distribution networks

机译:使用中型和低压分销网络中的住宅光伏电机增加电动汽车托管能力和平等性

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摘要

To achieve broad installation of electric vehicles (EVs), it is important to deploy fast EV charging stations at many points without distribution network reinforcement. This study develops a methodology for evaluating the hosting capacity for fast EV charging loads under medium‐ and low‐voltage (MV and LV) distribution networks with bus‐voltage and line‐current constraints; hence, the promising combination of fast EV charging and rooftop photovoltaic (PV) generation in distribution networks is analyzed. In particular, on a sunny day, the active power output supplied by rooftop PVs can be used to mitigate the voltage drop problem for end‐use residential customers. On a cloudy day, even though the active power output is smaller, the residual inverter capacities of rooftop PVs can be used to generate reactive power from those systems. In addition, in order to evaluate the spatial equalization of the EV hosting capacity at fast charging stations, an equalization factor of the spatial distribution is proposed, which is obtained as a percentage of the EV hosting capacity in the equally maximized case over that in the simply maximized case. The equalization factor can be improved from approximately 33 to 70% using the active and reactive power outputs from residential rooftop PVs. © 2019 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc.
机译:要实现电动汽车的广泛安装(EVS),重要的是在没有分配网络增强的情况下在许多点部署快速的EV充电站。这项研究开发了一种方法,用于评估具有总线电压和线路限制的中型和低压(MV和LV)分布网络下快速电动电动机充电载荷的托管能力;因此,分析了分销网络中快速电动汽车充电和屋顶光伏(PV)生成的有希望的组合。特别是,在晴天,屋顶PVS提供的主动功率输出可用于减轻最终用途住宅客户的电压下降问题。在阴天的一天,即使主动功率输出较小,屋顶PVS的残留逆变器容量也可以用于从这些系统中产生反应性。此外,为了评估快速充电站的电动汽车托管能力的空间均衡,提出了空间分布的均衡因子,该系数是在同样最大化的情况下以EV宿主能力的百分比获得简单地最大化案例。使用住宅屋顶PVS的主动和反应能力输出,可以将均衡因子从大约33%提高到70%。 ©2019日本电气工程师研究所。由John Wiley&amp出版Sons,Inc。

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