采用低比电流互感器的继电器的一次大电流试验

S. Zocholl, J. Mooney
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引用次数: 8

摘要

本文是介绍用小比电流互感器对继电器进行一次大电流试验的少数参考文献之一。精确测量大电流的大小需要高比电流互感器。然而,在小电机负载的基础上应用低比率ct是惯例。然后,保护工程师依靠电动机继电器来跳闸,因为电动机电缆中存在相对相故障的巨大电流。假设故障电流超过CT额定值的300倍可以产生足够大的二次电流以实现快速瞬时跳闸。这种信念的飞跃是基于缺乏对高度失真的二次波形以及它在继电器中如何处理的知识。测试表明,用于微处理器继电器的傅立叶和余弦滤波器在提取基频和消除谐波方面存在局限性。实验验证了余弦峰值自适应滤波器的有效性,该滤波器设计用于处理由低比ct在大电流作用下产生的高度失真的饱和波形。本文还报告了使用低比率ct对过流、电机和距离继电器进行初级大电流测试的结果。最后,将内部未滤波事件记录与相同情况下的MATLAB/spl reg/仿真结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Primary high-current testing of relays with low ratio current transformers
This paper serves as one of few references describing primary high-current testing of protective relays using low ratio current transformers. Accurate measurement of high-current magnitudes requires high ratio current transformers. However, it is the practice to apply low ratio CTs based on small motor loads. The protection engineer then relies on the motor relay to trip for the enormous current of a phase-to-phase fault in the motor cable. The assumption is that fault current exceeding 300 times the CT rating can produce a secondary current large enough for a fast instantaneous trip. This leap of faith is based on the lack of knowledge of the highly distorted secondary waveform and how it is processed in the relay. The tests show the limitations of Fourier and cosine filters used in microprocessor relays that extract the fundamental phasors and eliminate harmonics. The tests validate the operation of a cosine-peak adaptive filter designed to cope with the highly distorted saturated waveforms produced by the low ratio CTs subjected to high current. This paper also reports on the results of primary high-current tests of overcurrent, motor, and distance relays using low ratio CTs. Lastly, this paper compares the internal unfiltered event records with MATLAB/spl reg/ simulations of the same cases.
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