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首页> 外文期刊>International review of automatic control >The Application of a 6% Reactor in High-Voltage Capacitor Bank Switching
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The Application of a 6% Reactor in High-Voltage Capacitor Bank Switching

机译:6%电抗器在高压电容器组开关中的应用

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The switching of capacitor banks at high voltage for power-factor improvement and voltage support can generate significant transients. Such switching transients are produced by inrush currents and transient overvoltages in systems to which the capacitor bank is connected. These switching transients can cause damage to insulation and mal-operation of protective relays. This paper presents the simulation and investigation of a switching large-shunt capacitor bank in a 230kV Thailand substation system. A computer simulation using PSCAD/EMTDC was performed to determine the peak of the transient currents, the oscillation overvoltage and the frequency of the inrush current. The transient inrush current is generated by energizing of the 4×72 MVAr, 230 kV shunt capacitor banks. Methods of inrush current transient analysis and reduction were evaluated Limiting the transients with a 6% reactor in series was simulated. The simulations indicate that the 6% reactor can significantly reduce the magnitude of the transients.
机译:为了提高功率因数和电压支持,在高电压下切换电容器组会产生明显的瞬变。在与电容器组连接的系统中,浪涌电流和瞬态过电压会产生这种开关瞬变。这些开关瞬变会导致绝缘损坏和保护继电器误动作。本文介绍了一个230kV泰国变电站系统中的开关大并联电容器组的仿真和研究。使用PSCAD / EMTDC进行了计算机仿真,以确定瞬时电流的峰值,振荡过电压和浪涌电流的频率。瞬态浪涌电流是通过为4×72 MVAr,230 kV并联电容器组通电而产生的。评估了浪涌电流瞬态分析和减少的方法,模拟了串联6%电抗器的极限瞬态。仿真表明,6%电抗器可以显着减小瞬变的幅度。

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