Analysis and Minimization of the Oscillatory Currents in Multibranch Thyristor-Switched Capacitors

M. Saied
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引用次数: 2

Abstract

This paper addresses the switching transients in multibranch thyristor-switched capacitors (TSCs). The current transients following the addition of a branch to a group of already connected ones are analyzed. Expressions for both its fundamental and its oscillatory components are given in terms of the power network voltage, frequency, short-circuit level, and the switching angle. The relations include also the compensator parameters such as its total reactive power rating, total number of branches, the number of already connected branches, and the initial voltage on the capacitor involved in the switching transient. An expression for the distortion of the supply current is also given. A minimization procedure is presented for identifying the optimal switching angle leading to the least magnitude of the oscillatory current. Switching when the instantaneous supply voltage is equal to the initial voltage will result in the least oscillatory current only in the two special cases of a single-branch compensator, or in the switching of the first branch of a multi-branch TSC. The effect of both the total number of branches and the branch switching steps on the oscillatory current and on the optimal switching angle is also discussed. The advantage of the suggested procedure is demonstrated by investigating several case studies.
多支路晶闸管开关电容器振荡电流的分析与最小化
本文研究了多支路晶闸管开关电容器(TSCs)的开关瞬态。分析了在一组已连接的支路上增加一个支路后的电流瞬态。给出了其基波分量和振荡分量的电网电压、频率、短路电平和开关角的表达式。该关系还包括补偿器参数,如总无功额定值、总支路数、已连接支路数以及参与开关暂态的电容器上的初始电压。给出了电源电流畸变的表达式。提出了一种最小化程序,用于确定导致振荡电流最小值的最佳开关角。只有在单支路补偿器的两种特殊情况下,或者在多支路TSC的第一支路开关时,当瞬时电源电压等于初始电压时,才会产生最小的振荡电流。讨论了支路总数和支路开关步长对振荡电流和最佳开关角的影响。通过调查几个案例研究证明了所建议的程序的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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