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Distributed Newton-Based Voltage Control Method for Distribution Networks with High PV Penetration

机译:具有高PV渗透的分布式网络的分布式牛顿电压控制方法

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Due to the integration of large-scale distributed photovoltaic (PV) and the access of electronic devices, distribution networks are suffering from more and more serious voltage risks. Inherent uncertainty of PV generation poses significant challenges to voltage control. By using appropriate methods, PV inverters can autonomously regulate reactive power output in a distributed manner to improve voltage profile in networks. In this paper, a distributed Newton-based voltage control method is presented to realize distributed coordination of PV generation, which can fast respond to voltage mismatch and realize voltage profiles optimization. Exhibiting a more efficient, reliable and flexible performance than existing decentralized methods in case studies, the proposed method is demonstrated to be effectively to organize and control PV generation to provide corresponding reactive power support and exert “friendly” effect on distribution networks.
机译:由于大规模分布式光伏(PV)的集成以及电子设备的访问,分销网络遭受越来越严重的电压风险。 PV生成的固有不确定性对电压控制构成了重大挑战。通过使用适当的方法,PV逆变器可以以分布式方式自主调节无功功率输出,以改善网络中的电压分布。本文提出了一种分布式的牛顿电压控制方法,实现了PV生成的分布式协调,可以快速响应电压不匹配并实现电压型材优化。表现出比现有的分散方法更有效,可靠,灵活的性能,在进案研究中,所提出的方法被证明是有效地组织和控制光伏代,以提供对应的无功功率支持,并对分配网络发挥“友好”的影响。

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