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Voltage Control of Static Var Compensator for a Remote System Interconnected by Long-Distance AC Cables

机译:长距离交流电缆互连的远程系统静态无功补偿器的电压控制

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The voltage variation in a remote system is large when the system is connected by long-distance AC cables due to the cable capacitance. In Japan, the longest 54-km 66-kV AC submarine cable interconnection between the Kyushu mainland and Goto Islands was commissioned in 2005. It was requested to mitigate the voltage variation caused by switching off and on one circuit of the two circuits in the AC cables when a fault occurs. Since the conventional voltage control methods such as transformer tap changer or shunt capacitor and reactor banks are not sufficient because of their slow response time, a static var compensator (SVC) was installed on the Goto Islands. In such an application, an SVC control method should be developed so as not to override the existing voltage control systems. This paper describes the SVC control method developed for the Goto Islands AC interconnection project, which can be applied to similar situations. The effectiveness of the control method was verified by the results of effective value simulation and of field testing, which was implemented before the SVC was commissioned in 2007.
机译:当通过长距离交流电缆连接系统时,由于电缆的电容,远程系统中的电压变化会很大。在日本,九州大陆和五岛群岛之间最长的54公里66-kV AC海底电缆互连已于2005年投入使用。要求减轻由于AC中两个电路中的一个电路断开和接通而引起的电压变化。发生故障时连接电缆。由于常规的电压控制方法(如变压器分接开关或并联电容器和电抗器组)由于响应时间较慢而不够用,因此在五岛群岛上安装了静态无功补偿器(SVC)。在这样的应用中,应开发一种SVC控制方法,以不超越现有的电压控制系统。本文介绍了为Goto Islands AC互连项目开发的SVC控制方法,该方法可应用于类似情况。通过有效值模拟和现场测试的结果验证了该控制方法的有效性,该结果是在SVC于2007年投入使用之前实施的。

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