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Issue title: Special Section: Advances in intelligent computing for diagnostics, prognostics, and system health management
Guest editors: Chuan Li and José Valente de Oliveira
Article type: Research Article
Authors: Wang, Xina; b | Qin, Yia; c; * | Zhang, Aibinga; b
Affiliations: [a] State Key Laboratory of Mechanical Transmission, Chongqing University, Chongqing, People’s Republic of China | [b] College of Automotive Engineering, Chongqing University, Chongqing, People’s Republic of China | [c] College of Mechanical Engineering, Chongqing University, Chongqing, People’s Republic of China
Correspondence: [*] Corresponding author. Yi Qin. Tel.: +86 02365105721; E-mail: [email protected].
Abstract: A planetary gearbox is a crucial but failure-prone component in rotating machinery, therefore an intelligent and integrated approach based on impulsive signals, deep belief networks (DBNs) and feature uniformation is proposed in this paper to achieve real-time and accurate fault diagnosis. Since the gear faults usually generate the repetitive impulses, an integrated approach using the optimized Morlet wavelet transform, kurtosis index and soft-thresholding is applied to extract impulse components from original signals. Then time-domain features and frequency-domain features are calculated by both original signals and impulsive signals, and probability density functions are applied to study the sensitivities of the features to the faults. The extracted features are fed into DBNs to identify the fault types, and the results show that the DBN-based fault diagnosis method is feasible and the impulsive signals play a positive role to improve the accuracies. Finally, by the mean value of various signals under multiple load conditions, uniformed time-domain features are constructed to reduce the interference of loads, and the experimental results validate that feature uniformation can improve the accuracies and robustness of intelligent fault diagnosis approach.
Keywords: Deep belief networks (DBNs), impulsive signals, feature uniformation, mixed load condition, fault diagnosis
DOI: 10.3233/JIFS-169538
Journal: Journal of Intelligent & Fuzzy Systems, vol. 34, no. 6, pp. 3619-3634, 2018
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