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Autonomous Voltage Regulation by Distributed PV Inverters with Minimal Inter-Node Interference

机译:分布式光伏逆变器在节点间干扰最小的情况下实现自主稳压

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Reactive power capability of distributed photovoltaic (PV) inverters is exploited to mitigate voltage violations under high PV penetration in the distribution grid. Coordinating the reactive power compensations of individual PV inverters to obtain desired voltage regulation performance is a major challenge. In this paper, a decentralized method is proposed to enable PV inverters to autonomously regulate terminal node voltages. The proposed method minimizes the effect of a terminal node’s reactive power compensation on the voltage profile of its respective parent-to-terminal node. This ensures that the interference between the voltage regulation of terminal nodes by individual PV inverters is minimized. The performance of the proposed decentralized scheme is verified by extensive powerflow simulations of the EPRI Circuit 24 test feeder in open-source distribution system simulation platform OpenDSS.
机译:利用分布式光伏(PV)逆变器的无功功率功能来缓解配电网中高PV渗透下的电压违规。协调各个PV逆变器的无功功率补偿以获得所需的电压调节性能是一项重大挑战。在本文中,提出了一种分散式方法,以使光伏逆变器能够自主调节终端节点电压。所提出的方法最大程度地减少了终端节点的无功功率补偿对其相应的父终端节点电压分布的影响。这样可确保将各个PV逆变器对终端节点的电压调节之间的干扰降到最低。通过在开放源代码分发系统仿真平台OpenDSS中对EPRI Circuit 24测试馈线进行的大量潮流仿真,验证了所提出的分散方案的性能。

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