Title
State-Degradation-Oriented Fault Diagnosis for High-Speed Train Running Gears System.
Abstract
As one of the critical components of high-speed trains, the running gears system directly affects the operation performance of the train. This paper proposes a state-degradation-oriented method for fault diagnosis of an actual running gears system based on the Wiener state degradation process and multi-sensor filtering. First of all, for the given measurements of the high-speed train, this paper considers the information acquisition and transfer characteristics of composite sensors, which establish a distributed topology for axle box bearing. Secondly, a distributed filtering is built based on the bilinear system model, and the gain parameters of the filter are designed to minimize the mean square error. For a better presentation of the degradation characteristics in actual operation, this paper constructs an improved nonlinear model. Finally, threshold is determined based on the Chebyshev's inequality for a reliable fault diagnosis. Open datasets of rotating machinery bearings and the real measurements are utilized in the case studies to demonstrate the effectiveness of the proposed method. Results obtained in this paper are consistent with the actual situation, which validate the proposed methods.
Year
DOI
Venue
2020
10.3390/s20041017
SENSORS
Keywords
Field
DocType
fault diagnosis,distributed state estimation,state degradation
Control theory,Filter (signal processing),Mean squared error,Bearing (mechanical),Degradation (geology),Electronic engineering,Chebyshev filter,High speed train,Engineering,Train,Axle
Journal
Volume
Issue
ISSN
20
4.0
1424-8220
Citations 
PageRank 
References 
0
0.34
0
Authors
6
Name
Order
Citations
PageRank
Chao Cheng121.73
Wei Wang27011.19
Hao Luo32910.37
Bang-Cheng Zhang4619.39
Guoli Cheng500.34
Wanxiu Teng600.34