小波变换在局部放电信号去噪中的应用

A. Zaeni, T. Kasnalestari, U. Khayam
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引用次数: 12

摘要

隔离状态下的局部放电可以通过各种工具和方法进行检测,如RC检测器、HFCT、环路天线等。然而,一些局部放电检测装置在提供检测结果方面存在局限性,局部放电信号的结果仍然与噪声信号混在一起。针对这一问题,有必要寻找或开发一种从局部放电中获取原始信号的方法,从而使局部放电诊断的过程继续进行到下一步。一般来说,局部放电信号去噪的主要技术可以通过傅里叶变换在时域或频域实现。但该方法的缺点是当信号在频域进行处理时,会丢失时域信息,需要重新开发该方法才能得到合适的结果。一种可以做的努力是将该方法发展成小波变换。近年来,小波变换已成为一种有效的信号处理新方法。该方法已成功地应用于各个领域。在本研究中,我们将利用Symlet和Coiflet小波变换对局部放电信号进行表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Wavelet Transformation Symlet Type and Coiflet Type For Partial Discharge Signals Denoising
Partial Discharge which contained in isolation can be detected by various tools and methods such as RC detector, HFCT, Loop Antenna and others. However, some Partial Discharge detection devices have limitations in providing detection results so that the result of partrial discharge signal is still mixed with the noise signal. Given this problem, it is necessary to find or develop a method to obtain the original signal from the partial discharge so that the process of partial discharge diagnosis can be continued to the next step. In general, the main technique for removing noise from partial discharge signals can be realized in time domain or in frequency domain through fourier transform method. But this method has a weakness that when the signal is processed in the frequency domain, the time domain information becomes lost so that the method needs to be developed in order to obtain the appropriate results. One effort that can be done is to develop the method into Wavelet Transformation. Recent years The wavelet transform (WT) has become an effective new method of signal processing. This method has been successfully applied in various fields. In this study, experiments will be conducted to denody the partial discharge signals using the Symlet and Coiflet Wavelet Transformations.
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