太阳能渗透电网中空间分布式电动汽车充电电压上升与电压不平衡的协调

Joshua Then, A. Agalgaonkar, K. Muttaqi
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引用次数: 4

摘要

本文提出了一种基于下垂控制的分散控制策略来生成电动汽车充电计划。该策略旨在缓解屋顶光伏(PV)系统引起的电压上升和低压配电(LV)网络中不平衡负载引起的相位不平衡。该策略还平滑了电网的电压分布,减少了最大电压和最小电压之间的变化。采用基于澳大利亚半农村城镇的改进IEEE 13节点低压电网测试馈线,展示了光伏和电动汽车充电对电网的影响,并验证了所提出的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coordination of Spatially Distributed Electric Vehicle Charging for Voltage Rise and Voltage Unbalance Mitigation in Networks with Solar Penetration
This paper proposes a decentralised control strategy using droop-based control to generate a charging schedule for electric vehicles (EV). This strategy aims to mitigate voltage rise caused by rooftop photovoltaic (PV) systems and phase unbalance caused by unbalance loads in a low-voltage distribution (LV) network. The strategy also smooths the voltage profile of the network and reduces variation between the maximum and minimum voltages. A modified IEEE 13 node test feeder with an LV network based on a semi-rural Australian town was used to show the impacts of PV and EV charging in the network and verify the proposed strategy.
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