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Suppression Measures for Overvoltage Caused by Vacuum Circuit Breaker Switching Off 10-kV Shunt Reactor

机译:真空断路器关闭10-kV顺声反应器的过电压抑制措施

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During the process in which a vacuum circuit breaker (VCB) switches off the shunt reactor (SR), an overvoltage with high amplitude and high frequency (HF) will occur because of current chopping and multireignition. To reproduce this switching overvoltage faithfully, the voltage and current characteristics of the VCB were analyzed in this work, based on the field test data from a 220-kV substation in Chongqing, China. Then, typical parameters of three basic factors mentioned in Helmer's VCB model, chopping current value, dielectric dynamic insulation strength, and HF current quenching capability, were selected after statistical analysis and an arc reignition model of VCB was established. Based on this presented model, the influences of the surge arrester, the resistor-capacitor (RC) snubber, and the installation positions and quantities of these protective devices on overvoltage suppression performance were studied in simulation. In addition, the field test using the surge arrester and the RC snubber as the suppression measures was performed again in the same substation. Finally, we derived the conclusion that the most suitable suppression scheme for overvoltage caused by VCB switching off 10-kV SR is installing two 12/32.4 kV surge arresters at the terminals of the cables for the SR and the substation transformer (ST).
机译:在真空断路器(VCB)关闭的过程中,由于电流斩波和多征,将发生高幅度和高频(HF)的过电压。为了忠实地再现该开关过电压,基于来自中国重庆220千伏变电站的现场测试数据,在这项工作中分析了VCB的电压和电流特性。然后,在统计分析之后选择了舵机VCB模型中提到的三个基本因素,斩波电流值,介电动态绝缘强度和HF电流淬火能力的典型参数,并建立了VCB的弧度重新开始模型。基于该模型,研究了对电压避雷器,电阻器电容器(RC)缓冲器和安装位置和数量的影响,在模拟中研究了这些保护装置对过电压抑制性能的影响。此外,在相同的变电站中再次进行使用浪涌避雷器和RC缓冲器作为抑制措施的现场测试。最后,我们得出了由VCB关闭10-kV SR引起的过压的最合适的抑制方案正在为SR和变电站变压器(ST)安装两个12/32.4 kV浪涌避雷器。

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