Cooperative control of power conditioners in high-voltage distribution systems comprising a large number of PV systems

K. Fukunaga, A. Takahashi, J. Imai, S. Funabiki
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引用次数: 2

Abstract

Recently, a large number of photovoltaic systems have been installed in the distribution system. Reverse power flow through the distribution line caused by photovoltaic generation results in the voltage deviation from the specified range. Usually, the photovoltaic system is controlled autonomously using an individual power conditioner. Autonomous control causes inequality of the photovoltaic generation power on the same distribution line. This paper proposes three new cooperative control methods by communicating the information between power conditioners to overcome this problem. This paper discusses five control methods: conventional active power control, conventional active and reactive power control, the proposed cooperative active power control, and two proposed active and reactive cooperative controls. The study evaluates these control methods by the amount of PV generation power and the power loss in one day.
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由大量光伏系统组成的高压配电系统中电源调节器的协同控制
近年来,在配电系统中安装了大量的光伏系统。光伏发电引起的反向潮流通过配电线路,导致电压偏离规定范围。通常,光伏发电系统是使用单独的电源调节器自主控制的。自主控制导致同一配电线上光伏发电功率的不平等。为了克服这一问题,本文提出了三种新的通过空调间信息通信的协同控制方法。本文讨论了五种控制方法:常规有功控制、常规有功与无功控制、提出的合作有功控制和两种提出的有功与无功合作控制。本研究以光伏发电的发电量和一天的电力损耗来评价这些控制方法。
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