Wavelet based transmission line differential protection scheme

Nilesh Pahade, P.S. Patii, A. Badar
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引用次数: 2

Abstract

For protection of transmission line we require the most reliable system with reduce restoration capability. This paper deals with wavelet transform based transmission line fault classification and utilizes differential protection scheme for to locate the fault as well as to overcome the performance limit of differential protection transmission lines. The tripping action mainly depends on the current and flux waveforms obtained under fault conditions at two ends of relay location. Wavelet analysis is added as mathematical tool for pattern recognition and feature extraction and to classify the type of fault occurring on the transmission line. The continuous approximation of the Mexican hat as a mother wavelet and coefficients like 32nd and 64th are used to extract frequency information and detect the faulted phase selection. In current differential protective relay system CT saturation problem affect the faithful performance. So with the problem of mal-operation it causes differential protection system. The three phase transmission line currents of two ends are used as input signals at relay location using communication links. Simulation is carried out in Matlab/Simulink which confirms the security and sensitivity of the proposed scheme.
基于小波变换的传输线差动保护方案
为了保护输电线路,我们要求系统的可靠性要高,恢复能力要低。本文研究了基于小波变换的输电线路故障分类,利用差动保护方案进行故障定位,克服了差动保护输电线路的性能极限。跳闸动作主要取决于继电器位置两端故障条件下得到的电流和磁通波形。将小波分析作为一种数学工具,用于模式识别和特征提取,并对输电线路发生的故障类型进行分类。利用墨西哥帽连续逼近作为母小波,利用32、64等系数提取频率信息,检测故障选相。电流差动保护系统中CT饱和问题影响了系统的可靠性。从而引起差动保护系统的误动问题。两端的三相传输线电流通过通信链路作为继电器位置的输入信号。在Matlab/Simulink中进行了仿真,验证了该方案的安全性和灵敏度。
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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