An Ultrahigh Frequency Partial Discharge Signal De-Noising Method Based on a Generalized S-Transform and Module Time-Frequency Matrix

Due to electromagnetic interference in power substations, the partial discharge (PD) signals detected by ultrahigh frequency (UHF) antenna sensors often contain various background noises, which may hamper high voltage apparatus fault diagnosis and localization. This paper proposes a novel de-noising...

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Main Authors: Yushun Liu, Wenjun Zhou, Pengfei Li, Shuai Yang, Yan Tian
Format: Article
Language:English
Published: MDPI AG 2016-06-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/16/6/941
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spelling doaj-943ad9c7b60c463eb50c3234abd579692020-11-24T21:11:59ZengMDPI AGSensors1424-82202016-06-0116694110.3390/s16060941s16060941An Ultrahigh Frequency Partial Discharge Signal De-Noising Method Based on a Generalized S-Transform and Module Time-Frequency MatrixYushun Liu0Wenjun Zhou1Pengfei Li2Shuai Yang3Yan Tian4School of Electrical Engineering, Wuhan University, No. 299, Bayi Road, Wuhan 430072, ChinaSchool of Electrical Engineering, Wuhan University, No. 299, Bayi Road, Wuhan 430072, ChinaSchool of Electrical Engineering, Wuhan University, No. 299, Bayi Road, Wuhan 430072, ChinaSchool of Electrical Engineering, Wuhan University, No. 299, Bayi Road, Wuhan 430072, ChinaGuangzhou Power Supply Bureau Co. Ltd., No. 38, Huangshidong Road, Guangzhou 510620, ChinaDue to electromagnetic interference in power substations, the partial discharge (PD) signals detected by ultrahigh frequency (UHF) antenna sensors often contain various background noises, which may hamper high voltage apparatus fault diagnosis and localization. This paper proposes a novel de-noising method based on the generalized S-transform and module time-frequency matrix to suppress noise in UHF PD signals. The sub-matrix maximum module value method is employed to calculate the frequencies and amplitudes of periodic narrowband noise, and suppress noise through the reverse phase cancellation technique. In addition, a singular value decomposition de-noising method is employed to suppress Gaussian white noise in UHF PD signals. Effective singular values are selected by employing the fuzzy c-means clustering method to recover the PD signals. De-noising results of simulated and field detected UHF PD signals prove the feasibility of the proposed method. Compared with four conventional de-noising methods, the results show that the proposed method can suppress background noise in the UHF PD signal effectively, with higher signal-to-noise ratio and less waveform distortion.http://www.mdpi.com/1424-8220/16/6/941ultrahigh frequency antenna sensorpartial dischargesignal de-noisinggeneralized S-transformmodule time-frequency matrixperiodic narrowband noiseGaussian white noise
collection DOAJ
language English
format Article
sources DOAJ
author Yushun Liu
Wenjun Zhou
Pengfei Li
Shuai Yang
Yan Tian
spellingShingle Yushun Liu
Wenjun Zhou
Pengfei Li
Shuai Yang
Yan Tian
An Ultrahigh Frequency Partial Discharge Signal De-Noising Method Based on a Generalized S-Transform and Module Time-Frequency Matrix
Sensors
ultrahigh frequency antenna sensor
partial discharge
signal de-noising
generalized S-transform
module time-frequency matrix
periodic narrowband noise
Gaussian white noise
author_facet Yushun Liu
Wenjun Zhou
Pengfei Li
Shuai Yang
Yan Tian
author_sort Yushun Liu
title An Ultrahigh Frequency Partial Discharge Signal De-Noising Method Based on a Generalized S-Transform and Module Time-Frequency Matrix
title_short An Ultrahigh Frequency Partial Discharge Signal De-Noising Method Based on a Generalized S-Transform and Module Time-Frequency Matrix
title_full An Ultrahigh Frequency Partial Discharge Signal De-Noising Method Based on a Generalized S-Transform and Module Time-Frequency Matrix
title_fullStr An Ultrahigh Frequency Partial Discharge Signal De-Noising Method Based on a Generalized S-Transform and Module Time-Frequency Matrix
title_full_unstemmed An Ultrahigh Frequency Partial Discharge Signal De-Noising Method Based on a Generalized S-Transform and Module Time-Frequency Matrix
title_sort ultrahigh frequency partial discharge signal de-noising method based on a generalized s-transform and module time-frequency matrix
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2016-06-01
description Due to electromagnetic interference in power substations, the partial discharge (PD) signals detected by ultrahigh frequency (UHF) antenna sensors often contain various background noises, which may hamper high voltage apparatus fault diagnosis and localization. This paper proposes a novel de-noising method based on the generalized S-transform and module time-frequency matrix to suppress noise in UHF PD signals. The sub-matrix maximum module value method is employed to calculate the frequencies and amplitudes of periodic narrowband noise, and suppress noise through the reverse phase cancellation technique. In addition, a singular value decomposition de-noising method is employed to suppress Gaussian white noise in UHF PD signals. Effective singular values are selected by employing the fuzzy c-means clustering method to recover the PD signals. De-noising results of simulated and field detected UHF PD signals prove the feasibility of the proposed method. Compared with four conventional de-noising methods, the results show that the proposed method can suppress background noise in the UHF PD signal effectively, with higher signal-to-noise ratio and less waveform distortion.
topic ultrahigh frequency antenna sensor
partial discharge
signal de-noising
generalized S-transform
module time-frequency matrix
periodic narrowband noise
Gaussian white noise
url http://www.mdpi.com/1424-8220/16/6/941
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