Prognosis of electric scooter with intermittent faults: dual degradation processes approach
Prognosis of failing components under intermittent faults is challenging since intermittent faults gradually deteriorate in duration and magnitude over time meanwhile show the stochasticity of fault appearance and disappearance. To address the problem, this paper proposes an intelligent prognosis me...
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sg-ntu-dr.10356-1638312022-12-19T06:35:17Z Prognosis of electric scooter with intermittent faults: dual degradation processes approach Xiao, Chenyu Yu, Ming Wang, Hai Zhang, Bin Wang, Danwei School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering Intermittent Fault Dual Degradation Processes Prognosis of failing components under intermittent faults is challenging since intermittent faults gradually deteriorate in duration and magnitude over time meanwhile show the stochasticity of fault appearance and disappearance. To address the problem, this paper proposes an intelligent prognosis method for intermittently faulty components in electric scooter based on dual degradation processes. Firstly, fault detection and isolation is used to identify discrete faults and isolate possible intermittent faults in continuous components, where the fault isolation performance under multiple faults condition is improved by developing an extended fault signature matrix. Secondly, the adaptive competitive swarm optimization is proposed to identify the magnitude, appearing and disappearing instants of each intermittent fault for faulty components. After that, the dual degradation processes are established with the aid of tumbling window (TW), where the duration degradation process describes the evolutionary trend of the ratio of fault duration to the length of duration-TW, while the magnitude degradation process captures the evolutionary trend of maximum feature in magnitude-TW. With dual degradation processes and predefined failure thresholds, the remaining useful life of the faulty component is jointly predicted, where the degradation speed difference between duration and magnitude is considered. Finally, the proposed methods are validated by experiment results. This work was supported by the National Natural Science Foundation of China under Grants 62173119 and 61673154. 2022-12-19T06:35:16Z 2022-12-19T06:35:16Z 2021 Journal Article Xiao, C., Yu, M., Wang, H., Zhang, B. & Wang, D. (2021). Prognosis of electric scooter with intermittent faults: dual degradation processes approach. IEEE Transactions On Vehicular Technology, 71(2), 1411-1425. https://dx.doi.org/10.1109/TVT.2021.3131998 0018-9545 https://hdl.handle.net/10356/163831 10.1109/TVT.2021.3131998 2-s2.0-85120560058 2 71 1411 1425 en IEEE Transactions on Vehicular Technology © 2021 IEEE. All rights reserved. |
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Engineering::Electrical and electronic engineering Intermittent Fault Dual Degradation Processes Xiao, Chenyu Yu, Ming Wang, Hai Zhang, Bin Wang, Danwei Prognosis of electric scooter with intermittent faults: dual degradation processes approach |
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Prognosis of failing components under intermittent faults is challenging since intermittent faults gradually deteriorate in duration and magnitude over time meanwhile show the stochasticity of fault appearance and disappearance. To address the problem, this paper proposes an intelligent prognosis method for intermittently faulty components in electric scooter based on dual degradation processes. Firstly, fault detection and isolation is used to identify discrete faults and isolate possible intermittent faults in continuous components, where the fault isolation performance under multiple faults condition is improved by developing an extended fault signature matrix. Secondly, the adaptive competitive swarm optimization is proposed to identify the magnitude, appearing and disappearing instants of each intermittent fault for faulty components. After that, the dual degradation processes are established with the aid of tumbling window (TW), where the duration degradation process describes the evolutionary trend of the ratio of fault duration to the length of duration-TW, while the magnitude degradation process captures the evolutionary trend of maximum feature in magnitude-TW. With dual degradation processes and predefined failure thresholds, the remaining useful life of the faulty component is jointly predicted, where the degradation speed difference between duration and magnitude is considered. Finally, the proposed methods are validated by experiment results. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Xiao, Chenyu Yu, Ming Wang, Hai Zhang, Bin Wang, Danwei |
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Article |
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Xiao, Chenyu Yu, Ming Wang, Hai Zhang, Bin Wang, Danwei |
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Xiao, Chenyu |
title |
Prognosis of electric scooter with intermittent faults: dual degradation processes approach |
title_short |
Prognosis of electric scooter with intermittent faults: dual degradation processes approach |
title_full |
Prognosis of electric scooter with intermittent faults: dual degradation processes approach |
title_fullStr |
Prognosis of electric scooter with intermittent faults: dual degradation processes approach |
title_full_unstemmed |
Prognosis of electric scooter with intermittent faults: dual degradation processes approach |
title_sort |
prognosis of electric scooter with intermittent faults: dual degradation processes approach |
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2022 |
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https://hdl.handle.net/10356/163831 |
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1753801108180959232 |