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Simulation Study and Experimental Analysis of Current Closure Overvoltage Caused by High Reactance on the AC Bus at ±800 kV Converter Station

机译:在±800 kV转换器站交流总线对电备电压引起的电流闭合过电压的仿真研究与实验分析

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When high reactance on AC bus in ±800 kV converter station is switching, it will block the current and generate serious overvoltage, which may burn down the equipment. When AC bus in ±800 kV converter station is put into operation with high reactance, simulation calculation must be carried out to understand the situation of overvoltage caused by current closure, so as to arrange the restrictive measures and protect the equipment. In this paper, taking the AC bus high reactance of a ±800 kV converter station as an example, when the high reactance on the bus is disconnected, the overvoltage caused by the current closure is theoretically analyzed in detail, and the EMTS model of the system is established to simulate and calculate the overvoltage of the bus caused by high reactance. The results show that with the increase of the cutoff current value of the circuit breaker, the cutoff overvoltage generated by the shunt will be higher, even exceeding the required value of the regulations. A set of lightning arresters connected in parallel to the high-reactance side can effectively limit the interception overvoltage. During system debugging, field measurement data are collected, which is consistent with simulation data. The results provide valuable reference for the construction and operation of ±800 kV converter station.
机译:当在±800千伏换流站的交流总线上的高电抗切换,它会阻止电流和产生严重的过电压,这可能烧毁设备。当在±800千伏换流站交流母线投入运行具有高抗,模拟计算必须进行了解电流引起的过压封的情况,以便安排限制措施和保护设备。在本文中,采取了±800千伏换流站的交流汇流高电抗作为一个例子,当在总线上的高电抗被断开,由电流引起闭合过电压进行了理论分析中的细节,和的所述EMTS模型系统建立模拟和计算由高电抗总线的过电压。结果表明,与断路器的截止电流值的增加,由分流产生的过电压截止会更高,甚至超过的规定所要求的值。一组并联连接到所述高电抗侧避雷器的可有效地限制拦截过电压。在系统调试,现场测量数据被收集,这与模拟数据一致。结果提供了±800千伏换流站的构造和操作参考价值。

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