Envelope Analysis on Vibration Signals for Stator Winding Fault Early Detection in 3-Phase Induction Motors

This paper brings up a novel method for detecting induction motor stator winding faults at an early stage. The contribution of the work comes from the delicate handling of motor vibration by applying envelope analysis, which makes it possible to capture electrical short-circuit signature in mechanic...

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Main Authors: Chao Jin, Agusmian P. Ompusunggu, Zongchang Liu, Hossein D. Ardakani, Fredrik Petré, Jay Lee
Format: Article
Language:English
Published: The Prognostics and Health Management Society 2015-01-01
Series:International Journal of Prognostics and Health Management
Subjects:
Online Access:https://papers.phmsociety.org/index.php/ijphm/article/view/2239
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spelling doaj-df314d6b5fc943a4a576fe273e9769712021-07-02T21:13:50ZengThe Prognostics and Health Management SocietyInternational Journal of Prognostics and Health Management2153-26482153-26482015-01-0161doi:10.36001/ijphm.2015.v6i1.2239Envelope Analysis on Vibration Signals for Stator Winding Fault Early Detection in 3-Phase Induction MotorsChao Jin0Agusmian P. Ompusunggu1Zongchang Liu2Hossein D. Ardakani3Fredrik Petré4Jay Lee5NSF I/UCRC Center for Intelligent Maintenance Systems (IMS), University of Cincinnati, Cincinnati, OH, 45221, USAFlanders’ Mechatronics Technology Centre (FMTC), A Division of Flanders' Make vzw, Heverlee (Leuven), 3001, BelgiumNSF I/UCRC Center for Intelligent Maintenance Systems (IMS), University of Cincinnati, Cincinnati, OH, 45221, USANSF I/UCRC Center for Intelligent Maintenance Systems (IMS), University of Cincinnati, Cincinnati, OH, 45221, USAFlanders’ Mechatronics Technology Centre (FMTC), A Division of Flanders' Make vzw, Heverlee (Leuven), 3001, BelgiumNSF I/UCRC Center for Intelligent Maintenance Systems (IMS), University of Cincinnati, Cincinnati, OH, 45221, USAThis paper brings up a novel method for detecting induction motor stator winding faults at an early stage. The contribution of the work comes from the delicate handling of motor vibration by applying envelope analysis, which makes it possible to capture electrical short-circuit signature in mechanical signals, even if the magnitude of the fault is fairly incipient. Conventional induction motor condition-based maintenance methods usually involve current and voltage measurements, which could be expensive to collect, and vibration-based analysis is often only capable of detecting the fault when it is already quite significant. In contrast, the solution presented in this study provides a refreshing perspective by applying time synchronous averaging to remove the discrete frequency component, and amplitude demodulation to further enhance the signal with the help of kurtogram. Experimental results on a three-phase induction motor show that the method is also able to distinguish different fault severity levels.https://papers.phmsociety.org/index.php/ijphm/article/view/2239vibration monitoringearly fault detectionenvelope analysisinduction motor
collection DOAJ
language English
format Article
sources DOAJ
author Chao Jin
Agusmian P. Ompusunggu
Zongchang Liu
Hossein D. Ardakani
Fredrik Petré
Jay Lee
spellingShingle Chao Jin
Agusmian P. Ompusunggu
Zongchang Liu
Hossein D. Ardakani
Fredrik Petré
Jay Lee
Envelope Analysis on Vibration Signals for Stator Winding Fault Early Detection in 3-Phase Induction Motors
International Journal of Prognostics and Health Management
vibration monitoring
early fault detection
envelope analysis
induction motor
author_facet Chao Jin
Agusmian P. Ompusunggu
Zongchang Liu
Hossein D. Ardakani
Fredrik Petré
Jay Lee
author_sort Chao Jin
title Envelope Analysis on Vibration Signals for Stator Winding Fault Early Detection in 3-Phase Induction Motors
title_short Envelope Analysis on Vibration Signals for Stator Winding Fault Early Detection in 3-Phase Induction Motors
title_full Envelope Analysis on Vibration Signals for Stator Winding Fault Early Detection in 3-Phase Induction Motors
title_fullStr Envelope Analysis on Vibration Signals for Stator Winding Fault Early Detection in 3-Phase Induction Motors
title_full_unstemmed Envelope Analysis on Vibration Signals for Stator Winding Fault Early Detection in 3-Phase Induction Motors
title_sort envelope analysis on vibration signals for stator winding fault early detection in 3-phase induction motors
publisher The Prognostics and Health Management Society
series International Journal of Prognostics and Health Management
issn 2153-2648
2153-2648
publishDate 2015-01-01
description This paper brings up a novel method for detecting induction motor stator winding faults at an early stage. The contribution of the work comes from the delicate handling of motor vibration by applying envelope analysis, which makes it possible to capture electrical short-circuit signature in mechanical signals, even if the magnitude of the fault is fairly incipient. Conventional induction motor condition-based maintenance methods usually involve current and voltage measurements, which could be expensive to collect, and vibration-based analysis is often only capable of detecting the fault when it is already quite significant. In contrast, the solution presented in this study provides a refreshing perspective by applying time synchronous averaging to remove the discrete frequency component, and amplitude demodulation to further enhance the signal with the help of kurtogram. Experimental results on a three-phase induction motor show that the method is also able to distinguish different fault severity levels.
topic vibration monitoring
early fault detection
envelope analysis
induction motor
url https://papers.phmsociety.org/index.php/ijphm/article/view/2239
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