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Switching of capacitive current with vacuum interrupters

机译:用真空灭弧室切换电容电流

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摘要

Standard vacuum circuit breakers are required to fulfil various needs, e.g. the interruption capability, breaking/making operations. More and more commercial vacuum circuit breakers have to switch capacitive currents in different networks. Further to line and cable charging circuits, single capacitor bank and back-to-back capacitor banks have to be switched with lowest frequency possible. Late breakdowns are potentially dangerous to the installation as they could lead to the build-up of high switching overvoltages that can be harmful to the equipments. IEC and IEEE standards define switching circuits with the main parameters of peak inrush current, inrush frequency and capacitive breaking currents. Real applications often deviate from these parameters. The paper presents the results obtained with a special designed vacuum interrupter designated for capacitive switching investigations. The test was performed at high power station. Various single-bank and back-to-back capacitor bank switching tests have been done with several inrush parameters and capacitor bank current values. The goal of the investigations was to make a statistical correlation between the late breakdowns and potential sources of failure.
机译:需要标准真空断路器来满足各种需求,例如:中断能力,中断/进行操作。越来越多的商用真空断路器必须在不同的网络中切换电容性电流。除线路和电缆充电电路外,单个电容器组和背对背电容器组必须以尽可能低的频率进行开关。迟到的故障可能会对安装造成危险,因为它们可能导致高开关过电压的累积,从而可能对设备造成危害。 IEC和IEEE标准定义了具有峰值浪涌电流,浪涌频率和电容性分断电流的主要参数的开关电路。实际的应用程序通常会偏离这些参数。本文介绍了使用专门设计用于电容开关研究的真空灭弧室获得的结果。该测试是在高电站进行的。已经使用几个浪涌参数和电容器组电流值进行了各种单组和背对背电容器组切换测试。调查的目的是在后期故障和潜在故障源之间进行统计关联。

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