4.6 Article

Fault Diagnosis of Medium Voltage Circuit Breakers Based on Vibration Signal Envelope Analysis

期刊

SENSORS
卷 23, 期 19, 页码 -

出版社

MDPI
DOI: 10.3390/s23198331

关键词

medium voltage circuit breaker; fault diagnosis; vibration signal; envelope analysis; wavelet packet decomposition

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This research proposes a fault diagnosis approach based on vibration signal envelope analysis, aiming to improve the operation reliability of medium voltage circuit breakers (MVCBs) in modern power systems or new energy power stations. The method involves offline fault feature training and online fault diagnosis, using envelope extraction and wavelet packet-energy spectrum to build fault feature vectors. The proposed method reduces signal bandwidth and processing cost by only handling the envelope of the vibration signal.
In modern power systems or new energy power stations, the medium voltage circuit breakers (MVCBs) are becoming more crucial and the operation reliability of the MVCBs could be greatly improved by online monitoring technology. The purpose of this research is to put forward a fault diagnosis approach based on vibration signal envelope analysis, including offline fault feature training and online fault diagnosis. During offline fault feature training, the envelope of the vibration signal is extracted from the historic operation data of the MVCB, and then the typical fault feature vector M is built by using the wavelet packet-energy spectrum. In the online fault diagnosis process, the fault feature vector T is built based on the extracted envelope of the real-time vibration signal, and the MVCB states are assessed by using the distance between the feature vectors T and M. The proposed method only needs to handle the envelope of the vibration signal, which dramatically reduces the signal bandwidth, and then the cost of the processing hardware and software could be cut down.

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