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A Novel Time-Frequency Transform Based Spectral Energy Function for Fault Detection During Power Swing

机译:一种新的基于时频变换的频谱能量函数,用于功率摆动中的故障检测

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摘要

Fault during a power swing is a challenging task for the distance relay functioning. This article presents a spectral energy function for fault detection during a power swing using a novel time frequency transform known as the S-transform, a variable windowed short-time Fourier transform, which combines the elements of short-time Fourier transform and wavelet transform. Initially, the current signal is pre-processed using S-transform to generate the S-matrix and corresponding S-contours (time-frequency contours). The spectral energy content of the S-counters is used to register symmetrical and unsymmetrical faults during a power swing and, based on a set threshold on the spectral energy, the relay blocks during a power swing and issue of the tripping signal during fault. The proposed technique is tested for different fault conditions during a power swing with possible variations in operating parameters, including the ability to identify the faults with a response time of 1.25 cycles from the fault inception during power swing.
机译:功率摆幅期间的故障对于距离继电器的功能而言是一项艰巨的任务。本文提出了一种频谱能量函数,用于在功率摆幅期间使用一种称为S变换的新型时频变换(一种可变窗口的短时傅立叶变换)来检测故障,该变换结合了短时傅立叶变换和小波变换的元素。最初,使用S变换对电流信号进行预处理,以生成S矩阵和相应的S轮廓(时频轮廓)。 S计数器的频谱能量含量用于记录功率摆幅期间的对称和非对称故障,并基于频谱能量的设置阈值,继电器在功率摆幅期间阻塞,并在故障期间发出跳闸信号。所提出的技术在功率摆动期间针对不同的故障条件进行了测试,并且操作参数可能会发生变化,包括能够从功率摆动期间的故障开始起以1.25个周期的响应时间来识别故障。

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