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Optimal Placements of SVC Devices in Low Voltage Grids with High Penetration of PV Systems

机译:光伏系统高穿透力低压电网中SVC器件的最佳放置

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With the increase of load demand and distributed photovoltaic (PV) systems on the electric grid, maintaining the required voltage tolerance at the point delivery (customer homes/businesses) is becoming more challenging for electric power utilities. In a residential neighborhood, the peak load typically occurs in the early evening hours while maximum PV generation occurs during mid day. As a result, the lowest voltage operating points occur in the evening hours; whereas the highest voltage operating point occur during the day, when the PV systems are injecting more power than what is locally consumed. Static VAR Compensators (SVCs) can be used to mitigate voltage violations and smooth out the overall profile of a distribution feeder by managing the voltage at the secondary side of distribution service transformers. In this paper, a new method to optimize the placement of SVC devices in a residential neighborhood on the island of Maui, Hawaii, USA with highly distributed PV penetration is presented as a case study using real data to show the efficiency of the proposed optimal placement methodology.
机译:随着负载需求的增加和电网上的分布式光伏(PV)系统的发展,在点交付(客户家庭/企业)上维持所需的电压容忍度对于电力公司变得越来越具有挑战性。在居民区中,高峰负荷通常发生在傍晚,而最大的光伏发电发生在中午。结果,最低电压工作点出现在晚上。而最高电压工作点发生在白天,此时光伏系统注入的功率要大于本地消耗的功率。静态无功补偿器(SVC)可用于缓解电压违规情况,并通过管理配电服务变压器次级侧的电压来平滑配电馈线的总体轮廓。在本文中,作为一个案例研究,提出了一种使用SVC来优化SVC设备在美国夏威夷毛伊岛居民区的布局的新方法,该案例具有很高的PV渗透率,使用真实数据来说明所建议的最佳布局的效率方法。

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