Vibration Signature Extraction of High-Voltage Circuit Breaker by Frequency and Chaotic Analysis

This paper aims at presenting a novel approach for the analysis of vibration signals detected from circuit breaker (CB) opening or closing operations and to mechanical fault identification. An adaptive signal decomposition approach and chaotic nonlinear dynamic technique are used for extracting faul...

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Main Authors: Qiuyu Yang, Jiangjun Ruan, Zhijian Zhuang, Daochun Huang, Zhibin Qiu
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8735846/
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spelling doaj-9f6876f61194488d85047fd347dce98d2021-03-30T00:05:32ZengIEEEIEEE Access2169-35362019-01-017808848089210.1109/ACCESS.2019.29223598735846Vibration Signature Extraction of High-Voltage Circuit Breaker by Frequency and Chaotic AnalysisQiuyu Yang0https://orcid.org/0000-0003-3717-9609Jiangjun Ruan1Zhijian Zhuang2Daochun Huang3Zhibin Qiu4School of Electrical Engineering and Automation, Wuhan University, Wuhan, ChinaSchool of Electrical Engineering and Automation, Wuhan University, Wuhan, ChinaPower Product Medium Voltage Technology Center, ABB (China) Co., Ltd., Xiamen, ChinaSchool of Electrical Engineering and Automation, Wuhan University, Wuhan, ChinaSchool of Electrical Engineering and Automation, Wuhan University, Wuhan, ChinaThis paper aims at presenting a novel approach for the analysis of vibration signals detected from circuit breaker (CB) opening or closing operations and to mechanical fault identification. An adaptive signal decomposition approach and chaotic nonlinear dynamic technique are used for extracting fault sensitive features of CB. The fault sensitive frequency band is derived using variational mode decomposition (VMD) combining with Hilbert marginal spectrum (HMS). The obtained sensitive frequency band(s) are employed for the reconstruction of the dynamical attractor (chaotic dynamics viewed from a phase space perspective, namely, the attractor-based perspective) following the Taken's embedding theorem. The invariant measures and ergodic quantities such as the largest Lyapunov exponent, correlation dimension, and Kolmogorov entropy which can be estimated on the reconstructed attractor are presented as the fault sensitive features. The CB fault is estimated in a chaotic space using these sensitive features. The effectiveness of the developed method is evaluated by using data sets recorded from several vacuum CBs with the same type.https://ieeexplore.ieee.org/document/8735846/Circuit breaker (CB)vibration signaturenonlinear dynamicsphase space reconstructionchaotic attractorVMD-HMS
collection DOAJ
language English
format Article
sources DOAJ
author Qiuyu Yang
Jiangjun Ruan
Zhijian Zhuang
Daochun Huang
Zhibin Qiu
spellingShingle Qiuyu Yang
Jiangjun Ruan
Zhijian Zhuang
Daochun Huang
Zhibin Qiu
Vibration Signature Extraction of High-Voltage Circuit Breaker by Frequency and Chaotic Analysis
IEEE Access
Circuit breaker (CB)
vibration signature
nonlinear dynamics
phase space reconstruction
chaotic attractor
VMD-HMS
author_facet Qiuyu Yang
Jiangjun Ruan
Zhijian Zhuang
Daochun Huang
Zhibin Qiu
author_sort Qiuyu Yang
title Vibration Signature Extraction of High-Voltage Circuit Breaker by Frequency and Chaotic Analysis
title_short Vibration Signature Extraction of High-Voltage Circuit Breaker by Frequency and Chaotic Analysis
title_full Vibration Signature Extraction of High-Voltage Circuit Breaker by Frequency and Chaotic Analysis
title_fullStr Vibration Signature Extraction of High-Voltage Circuit Breaker by Frequency and Chaotic Analysis
title_full_unstemmed Vibration Signature Extraction of High-Voltage Circuit Breaker by Frequency and Chaotic Analysis
title_sort vibration signature extraction of high-voltage circuit breaker by frequency and chaotic analysis
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description This paper aims at presenting a novel approach for the analysis of vibration signals detected from circuit breaker (CB) opening or closing operations and to mechanical fault identification. An adaptive signal decomposition approach and chaotic nonlinear dynamic technique are used for extracting fault sensitive features of CB. The fault sensitive frequency band is derived using variational mode decomposition (VMD) combining with Hilbert marginal spectrum (HMS). The obtained sensitive frequency band(s) are employed for the reconstruction of the dynamical attractor (chaotic dynamics viewed from a phase space perspective, namely, the attractor-based perspective) following the Taken's embedding theorem. The invariant measures and ergodic quantities such as the largest Lyapunov exponent, correlation dimension, and Kolmogorov entropy which can be estimated on the reconstructed attractor are presented as the fault sensitive features. The CB fault is estimated in a chaotic space using these sensitive features. The effectiveness of the developed method is evaluated by using data sets recorded from several vacuum CBs with the same type.
topic Circuit breaker (CB)
vibration signature
nonlinear dynamics
phase space reconstruction
chaotic attractor
VMD-HMS
url https://ieeexplore.ieee.org/document/8735846/
work_keys_str_mv AT qiuyuyang vibrationsignatureextractionofhighvoltagecircuitbreakerbyfrequencyandchaoticanalysis
AT jiangjunruan vibrationsignatureextractionofhighvoltagecircuitbreakerbyfrequencyandchaoticanalysis
AT zhijianzhuang vibrationsignatureextractionofhighvoltagecircuitbreakerbyfrequencyandchaoticanalysis
AT daochunhuang vibrationsignatureextractionofhighvoltagecircuitbreakerbyfrequencyandchaoticanalysis
AT zhibinqiu vibrationsignatureextractionofhighvoltagecircuitbreakerbyfrequencyandchaoticanalysis
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