A practical approach in substation capacitor bank applications to calculating, limiting, and reducing the effects of transient currents

L. M. Smith, Transient Currents, L. M. Smith
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引用次数: 29

Abstract

When two or more capacitor banks are paralleled on a common bus, the back-to-back switching of a bank against one or more already energized banks can produce high peak transient in-rush current values. Typically, these currents can exceed the available fault current levels previously present at the bus. The presence of inductance and capacitance together makes the transients oscillatory. Because of close circuit coupling, the transient frequency is generally several kHz or higher and usually decays to zero in a fraction of a 60 Hz cycle. The relatively high level and short duration of these currents can damage substation and control equipment necessitating that appropriate precautions be taken during the design process. This paper explores the methods for estimating capacitor bank transient currents, based on ANSI/IEEE C37.012-1979, for various sizes, voltages, and configurations of real world capacitor bank installations. Also discussed are the various accepted and applied methods for limiting substation equipment susceptibility to transients, as well as reducing the magnitude of the transients themselves.<>
一种在变电站电容器组应用中计算、限制和减小暂态电流影响的实用方法
当两个或多个电容器组并联在一个公共母线上时,一个电容器组对一个或多个已通电电容器组的背靠背开关可以产生峰值瞬态涌流值。通常,这些电流会超过总线上先前存在的可用故障电流水平。电感和电容的共同存在使瞬态振荡。由于闭环耦合,瞬态频率通常为几千赫或更高,并且通常在60赫兹周期的一小部分内衰减为零。这些电流相对较高且持续时间短,可能会损坏变电站和控制设备,因此在设计过程中必须采取适当的预防措施。本文探讨了基于ANSI/IEEE C37.012-1979的电容器组瞬态电流估计方法,适用于各种尺寸、电压和实际电容器组安装的配置。还讨论了各种公认和应用的方法来限制变电站设备对瞬变的敏感性,以及降低瞬变本身的大小。
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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