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E-Field Simulation and Voltage Withstand Test Analysis of Solid Insulators for AC GIS Used in High-Speed Railway Traction Substation

机译:高速铁路牵引变电站AC GIS固体绝缘子的E场仿真和电压测试分析

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The solid insulators are widely used in alternating current gas-insulated switchgear (GIS) equipment in high-speed railway traction substation. They have both mechanical support and electrical insulation functions. AC withstand voltage test is required before they are put into operation. In this paper, the series resonant circuit is theoretically analyzed, and the transient voltage change process of GIS solid insulators during sudden flashover is simulated and analyzed in the MATLAB/ Simulink computing environment. The 3D electric field simulation of basin insulators and typical solid insulators with insulation support is carried out by using ANSYS electric field simulation platform. The withstand voltage test of the real interval of GIS is carried out to obtain the opening of circuit breaker. The relationship curves between Q, I and applied voltage U of solid insulator under two operating conditions are obtained. The results show that after flashover of solid insulators in series resonant circuit, the arc will be extinguished immediately after high voltage drop, and the recovery voltage will be established for a long time. The typical electric field distribution of solid insulators has concentrated area of local electric field, and flashover in field withstand voltage test starts in high field strength area. The research results of this paper provide some theoretical support for the field voltage withstand test of solid insulators used in AC GIS with series resonant circuit.
机译:固体绝缘体广泛用于高速铁路牵引变电站中的交流式气体绝缘开关设备(GIS)设备。它们具有机械支撑和电绝缘功能。在投入运行之前需要AC耐压测试。本文理论上,串联谐振电路是在理论上分析的,在Matlab / Simulink计算环境中模拟和分析了突然闪络期间GIS固体绝缘体的瞬态电压变化过程。通过使用ANSYS电场模拟平台进行盆绝缘体和具有绝缘载体的典型固体绝缘体的3D电场模拟。进行GIS的实际间隔的耐压测试以获得断路器的开口。获得了在两个操作条件下的Q,I和固体绝缘体的施加电压U之间的关系曲线。结果表明,在串联谐振电路中固体绝缘体闪过闪光灯后,电弧将立即熄灭高压下降后,恢复电压将长时间建立。固体绝缘体的典型电场分布具有集中区域的局部电场,现场耐压试验中的闪络在高场强度区域开始。本文的研究结果为AC GIS与串联谐振电路的固体绝缘体进行了一些理论支持。

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