Transmission line faults detection, classification, and location using Discrete Wavelet Transform

K. Saravanababu, P. Balakrishnan, K. Sathiyasekar
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引用次数: 34

Abstract

Transmission line is a vital component that acts as a bridge between the generating stations and end users. In the power system, reliability and stability must be ensured to provide continuity of service. Transmission lines run over several kilometers will have the chance for occurrence of fault. In order to maintain stability, faults should be cleared at short span of time with recent advancements in signal processing. In this paper, a novel technique for the protection of transmission lines is proposed. The proposed system uses Discrete Wavelet Transform (DWT) which is widely used in recent times for power system protection. DWT is used here to extract the hidden factors from the fault signals by performing decomposition at different levels. Daubechies wavelet “dB6” is used with single level decomposition and adaptive threshold is calculated to discriminate and detect the faulty phase. The location of faults is carried out by obtaining the local fault information and remote location fault information along with the transmission line length. The system is independent of any statistical system data and has negligible fault resistance. Test system is modeled and fault signals are generated to test the reliability of the algorithm. The proposed system promises the result by detecting, classifying and locating all the ten faults possible in the transmission line of the power system.
基于离散小波变换的输电线路故障检测、分类与定位
输电线路是连接电站和终端用户的重要桥梁。在电力系统中,必须保证可靠性和稳定性,以提供连续的服务。超过几公里的输电线路有发生故障的可能。随着信号处理技术的发展,为了保持系统的稳定性,需要在短时间内清除故障。本文提出了一种新的输电线路保护技术。该系统采用了近年来广泛应用于电力系统保护的离散小波变换(DWT)。本文采用小波变换在不同层次上进行分解,从故障信号中提取隐藏因子。采用小波“dB6”进行单级分解,并计算自适应阈值来判别和检测故障相位。故障定位是通过获取本地故障信息和远程故障信息,并结合传输线长度进行定位。该系统不依赖于任何系统统计数据,故障电阻可忽略不计。对测试系统进行建模,并生成故障信号,对算法的可靠性进行测试。该系统通过对电力系统输电线路中可能出现的十种故障进行检测、分类和定位,保证了检测结果的准确性。
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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