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首页> 外文期刊>Electrical engineering >Simulation analysis of the switching of 230 kV substation shunt capacitor banks with a 6% series reactor for limiting transient inrush currents and oscillation overvoltage
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Simulation analysis of the switching of 230 kV substation shunt capacitor banks with a 6% series reactor for limiting transient inrush currents and oscillation overvoltage

机译:230 kV变电站分流电容器堤与6%串联反应器切换的仿真分析,以限制瞬态浪涌电流和振动过电压

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摘要

This paper presents the simulation and investigation of switching large shunt capacitor banks in a 230 kV Thailand substation system. Simulations are performed using PSCAD/EMTDC to determine the peak of the transient inrush currents, the oscillation overvoltage and the frequency of the inrush current. The inrush current is generated by energizing the 4 x 72 Mvar, 230 kV shunt capacitor banks. The purpose is to observe and investigate the behaviour of transient inrush currents and oscillation overvoltages to ensure the safe and successful operation of shunt capacitor banks. The methodology of inrush current transient analysis and transient reduction control was studied. The proposed method for controlling system transients during capacitor energization is through the use of a switching shunt capacitor bank with a series 6% reactor. The simulation cases for transient mitigation are numerically conducted for six different cases: a base case, with a pre-insertion resistor, with a pre-insertion inductor, with a current-limiting reactor, with a series 6% reactor and using synchronous closing control. The effects of parameters such as the sizing of the current-limiting reactor, the capacitor bank rating and the short-circuit impedance of the system are investigated. The simulation results demonstrate that the switching shunt capacitor bank with a series 6% reactor is effective in reducing the high transient inrush currents and oscillation overvoltages.
机译:本文介绍了230 kV泰国变电站系统中切换大型分流电容器组的仿真和研究。使用PSCAD / EMTDC进行仿真以确定瞬态浪涌电流的峰值,振荡过电压和浪涌电流的频率。通过激励4×72 MVAR,230 kV分流电容器组来产生浪涌电流。目的是观察和研究瞬态浪涌电流和振荡过电压的行为,以确保分流电容器组的安全和成功操作。研究了浪涌电流瞬态分析和瞬态减少控制的方法。用于控制电容器通电期间的系统瞬变的所提出的方法是使用具有串联6%电抗器的切换分流电容器组。瞬态缓解的模拟案例在数量上进行了六种不同的情况:基本情况,具有预插入电阻,具有预插入电感器,具有限流反应器,具有6%的反应器,并使用同步关闭控制。研究了诸如限流反应器的尺寸,电容器组额定值和系统的短路阻抗的参数的影响。仿真结果表明,带有6%反应器的开关分流电容器组有效地减少了高瞬态浪涌电流和振荡过电压。

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