Research on rotor fault identification based on the integration of symbolic entropy and evidence theory

A rotor fault identification method integrating symbolic entropy and evidence theory was proposed for the problem of the difficulty to accurately identify the fault state caused by the nonlinearity and nonstationarity of the rotor vibration signal. Firstly, the fluctuation sequence was obtained by p...

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Main Authors: SHAN Song, CHEN HongMing, LIU JingXuan, DENG ShuaiQin, SU Yu
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2024-06-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2024.03.004
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author SHAN Song
CHEN HongMing
LIU JingXuan
DENG ShuaiQin
SU Yu
author_facet SHAN Song
CHEN HongMing
LIU JingXuan
DENG ShuaiQin
SU Yu
author_sort SHAN Song
collection DOAJ
description A rotor fault identification method integrating symbolic entropy and evidence theory was proposed for the problem of the difficulty to accurately identify the fault state caused by the nonlinearity and nonstationarity of the rotor vibration signal. Firstly, the fluctuation sequence was obtained by processing the recorded data of the rotor system by de-averaging and difference. Secondly the binary sequence was obtained by binary processing. Thirdly the symbol sequence was obtained by encoding to calculate the symbol entropy. In this paper, the code length in the calculation of symbol entropy was determined by an indicator of the relative growth rate of the mean value of symbol entropy. Through experimental analysis, the symbol entropy of the four channels of the rotor was used as the identification vector, and then compared with the identification standard vector obtained from the historical data to obtain the recognition probability of each state, and finally the results of two tests were fused through D-S evidence theory to obtain the final discriminatory result. Compared with the traditional fault identification method based on symbolic entropy, the proposed method can accurately identify the common states of the rotor system, providing a solution to the rotor fault state identification problem when the vibration signals are in nonlinear and nonstationary conditions.
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institution Kabale University
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publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-8a0e88cd609d47a285630c381b7b5cd52025-01-15T02:45:20ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692024-06-014654054963938515Research on rotor fault identification based on the integration of symbolic entropy and evidence theorySHAN SongCHEN HongMingLIU JingXuanDENG ShuaiQinSU YuA rotor fault identification method integrating symbolic entropy and evidence theory was proposed for the problem of the difficulty to accurately identify the fault state caused by the nonlinearity and nonstationarity of the rotor vibration signal. Firstly, the fluctuation sequence was obtained by processing the recorded data of the rotor system by de-averaging and difference. Secondly the binary sequence was obtained by binary processing. Thirdly the symbol sequence was obtained by encoding to calculate the symbol entropy. In this paper, the code length in the calculation of symbol entropy was determined by an indicator of the relative growth rate of the mean value of symbol entropy. Through experimental analysis, the symbol entropy of the four channels of the rotor was used as the identification vector, and then compared with the identification standard vector obtained from the historical data to obtain the recognition probability of each state, and finally the results of two tests were fused through D-S evidence theory to obtain the final discriminatory result. Compared with the traditional fault identification method based on symbolic entropy, the proposed method can accurately identify the common states of the rotor system, providing a solution to the rotor fault state identification problem when the vibration signals are in nonlinear and nonstationary conditions.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2024.03.004RotorSymbolic entropyEvidence theoryFault identificationRelative growth rate
spellingShingle SHAN Song
CHEN HongMing
LIU JingXuan
DENG ShuaiQin
SU Yu
Research on rotor fault identification based on the integration of symbolic entropy and evidence theory
Jixie qiangdu
Rotor
Symbolic entropy
Evidence theory
Fault identification
Relative growth rate
title Research on rotor fault identification based on the integration of symbolic entropy and evidence theory
title_full Research on rotor fault identification based on the integration of symbolic entropy and evidence theory
title_fullStr Research on rotor fault identification based on the integration of symbolic entropy and evidence theory
title_full_unstemmed Research on rotor fault identification based on the integration of symbolic entropy and evidence theory
title_short Research on rotor fault identification based on the integration of symbolic entropy and evidence theory
title_sort research on rotor fault identification based on the integration of symbolic entropy and evidence theory
topic Rotor
Symbolic entropy
Evidence theory
Fault identification
Relative growth rate
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2024.03.004
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AT chenhongming researchonrotorfaultidentificationbasedontheintegrationofsymbolicentropyandevidencetheory
AT liujingxuan researchonrotorfaultidentificationbasedontheintegrationofsymbolicentropyandevidencetheory
AT dengshuaiqin researchonrotorfaultidentificationbasedontheintegrationofsymbolicentropyandevidencetheory
AT suyu researchonrotorfaultidentificationbasedontheintegrationofsymbolicentropyandevidencetheory