A Methodology for Fault Detection and Classification Using PMU Measurements

Amit Jain, T. Archana, M. B. K. Sahoo
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引用次数: 9

Abstract

Phasor Measurement Units (PMU) has become integral part of advanced measurement technologies for power transmission and distribution systems. The PMU measurement gives a clear picture of sequence of phenomenon happening in power system. In power system, faults, load change etc. happens frequently. Since faults are severe cases it is required to detect them at the earliest. Here a two-stage fault detection method is proposed which can clearly distinguish between disturbances and faults in power system. The positive and zero sequence voltages obtained from PMUs are utilized in the detection algorithm. Once the fault is detected, it is required to recognize the kind of fault that has occurred. A Support Vector Machine is proposed for categorizing the fault type. The 14 bus IEEE transmission test system is modelled in PSS/E and MATLAB/Simulink for testing and validating the proposed detection and classification methods.
利用 PMU 测量进行故障检测和分类的方法
相位测量单元(PMU)已成为输配电系统先进测量技术的组成部分。PMU 测量可清楚地显示电力系统中发生的一系列现象。在电力系统中,故障、负荷变化等经常发生。由于故障情况严重,因此需要尽早发现。这里提出的两阶段故障检测方法可以清楚地区分电力系统中的干扰和故障。检测算法利用 PMU 获得的正序电压和零序电压。一旦检测到故障,就需要识别发生故障的类型。建议使用支持向量机对故障类型进行分类。在 PSS/E 和 MATLAB/Simulink 中对 14 总线 IEEE 输电测试系统进行建模,以测试和验证所提出的检测和分类方法。
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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