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首页> 外文期刊>IEEE systems journal >Online Centralized Coordination of Charging and Phase Switching of PEVs in Unbalanced LV Networks With High PV Penetrations
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Online Centralized Coordination of Charging and Phase Switching of PEVs in Unbalanced LV Networks With High PV Penetrations

机译:高光伏渗透的不平衡LV网络中PEV充电和相位切换的在线集中协调

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摘要

The next decade is likely to witness considerable growth in the application of plug-in electric vehicles (PEVs). However, uncoordinated PEV charging in low-voltage distribution networks may cause grid issues, such as transformer overload and voltage unbalance (VU). Therefore, it is essential to consider a more suitable methodology of voltage regulation for the consumers placed at the end of the feeder when the network is predominantly resistive. With this background, this article investigates the capability of dynamic PEV load transfer within the three phases of a distribution network to propose a new hybrid PEV coordination approach. In addition to the online centralized battery charging and var discharging, this approach performs local voltage profiles improvement by switching PEV at selected single-phase residential houses such that a PEV can be switched from a heavily loaded phase to a (relatively) lightly loaded phase. This results in better voltage regulations and VU reductions. The impacts of uncoordinated and proposed genetic algorithm (GA) coordinated PEV charging on VU and node voltage profiles and losses are simulated for a real unbalanced Western Australian distribution network in the Perth solar city over 24 h.
机译:未来十年可能在应用插入电动车(PEV)的应用中见证了相当大的增长。然而,低压配电网中的未开放的PEV充电可能导致电网问题,例如变压器过载和电压不平衡(VU)。因此,当网络主要电阻时,必须考虑放置在馈线端部的消费者的电压调节方法。在此背景下,本文调查了动态PEV负载转移在分销网络的三个阶段内的能力,提出了一种新的混合PEV协调方法。除了在线集中电池充电和var放电之外,该方法还通过在所选择的单相居住房屋处切换PEV来执行局部电压轮廓,使得PEV可以从大量加载的相位切换到(相对)轻量加载的相位。这导致更好的电压规则和VU减少。未开补和提出的遗传算法(GA)协调PEV对VU和节点电压谱的影响以及珀斯太阳能城的实际不平衡的西澳市场模拟了24小时。

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