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Repeated Strike Process During Disconnector Operation in Ultra-High Voltage Gas-Insulated Switchgear

机译:超高压气体绝缘开关设备中的隔离开关操作期间反复的触击过程

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摘要

Very fast transient over-voltage (VFTO), induced by disconnector operations in gas-insulated switchgears, has become the limiting dielectric stress at ultra-high voltage levels. Much work has been done to investigate single-strike waveforms of VFTO. However, little study has been carried out investigating the repeated strike process, which would influence VFTO significantly. In this paper, we carried out 450 effective experiments in an ultra-high voltage test circuit, and conducted calculations through the Monte Carlo simulation method, to investigate the repeated strike process. Firstly, the mechanism of the repeated strike process is proposed, based on the experimental results. Afterwards, statistical breakdown characteristics of disconnectors are obtained and analyzed. Finally, simulations of the repeated strike process are conducted, which indicate that the dielectric strength recovery speed and polarity effect factor have a joint effect on VFTO. This study enhances the understanding of the nature of VFTO, and may help to optimize the disconnector designed to minimize VFTO.
机译:由气体绝缘的开关设备中的隔离开关操作引起的非常快速的瞬态过电压(VFTO)已成为超高压下的极限介电应力。为了研究VFTO的单次触发波形,已经做了很多工作。但是,很少有研究调查重复的打击过程,这将严重影响VFTO。在本文中,我们在超高压测试电路中进行了450次有效实验,并通过蒙特卡罗模拟方法进行了计算,以研究重复的触击过程。首先,根据实验结果,提出了重复打击过程的机理。之后,获得并分析了隔离开关的统计击穿特性。最后,对反复撞击过程进行了仿真,结果表明,介电强度恢复速度和极性影响因子对VFTO具有共同影响。这项研究增强了对VFTO性质的理解,并可能有助于优化隔离器,以最大程度地降低VFTO。

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