Determining critical activation time of inductive fault current limiters in electric power systems

Yucheng Zhang, R. Dougal
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引用次数: 2

Abstract

With the capacity expansion of power systems, fault currents may exceed the interrupting capacity ratings of circuit breakers (CBs). Inductive fault current limiters (FCLs) are able to effectively limit fault currents and maintain circuit breakers on duty. For power systems of different ratings, it is important to decide whether the parameters of an inductive FCL satisfy the requirement of limiting fault currents under a user-defined value. By analyzing the transient performance of fault current limitation processes, the critical activation time of inductive FCLs has been formulated. The critical activation time relates to the system voltage ratings, the inductances of FCLs and the upbound of fault currents choosen by users or CB's ratings. Fault currents can be limited under any user-defined value when the activation time is shorter than the critical one. The equation reveals that an inductive FCL which works in medium-voltage systems may not be able to limit fault current under a certain value in high-voltage systems. An inductive FCL should be checked according to this equation before it is applied to a paticular power system. These conclusions are verified by simulation results.
电力系统电感式故障限流器临界激活时间的确定
随着电力系统容量的扩大,故障电流可能会超过断路器的额定中断容量。电感式故障限流器(fcl)能够有效地限制故障电流并保持断路器值班。对于不同额定值的电力系统,确定电感式FCL的参数是否满足在用户自定义值下限制故障电流的要求是很重要的。通过分析故障限流过程的暂态特性,推导出电感式fcl的临界激活时间。临界激活时间与系统电压额定值、fcl的电感以及用户选择的故障电流上限值或CB额定值有关。当激活时间小于临界时间时,故障电流可以限制在任意用户定义的值。该方程揭示了在中压系统中工作的电感式FCL在高压系统中可能无法将故障电流限制在一定值以下。电感式FCL在应用于特定电力系统之前,应根据该方程进行检查。仿真结果验证了上述结论。
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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