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Online Full Range Copper Loss Minimization for Single-phase Short-circuit Fault Tolerant Control in Five-phase PMSM

Wang, Huanran; Gu, Chunyang; Zhao, Weiduo; Wang, Shuo; Zhang, Xiaochen; Buticchi, Giampaolo; Gerada, Chris; Zhang, He

Authors

Huanran Wang

Chunyang Gu

Weiduo Zhao

Shuo Wang

Xiaochen Zhang

Giampaolo Buticchi

He Zhang



Abstract

Five-phase machines are increasingly adopted in high-reliability applications because of their fault-tolerant characteristics. In this framework, single-phase short-circuits (SCs) fault tolerant control has drawn increasing interest. One issue with fault-tolerant control is the increased copper loss that a machine experiences in post-fault operations. This study adopts not only the full-range minimum copper loss (FRML) SC fault application but also its online tuning process. To achieve the online FRML strategy, the contact resistance and motor speed are considered as factors to first analyze the uncontrollable SC current. Furthermore, after eliminating the multiple effects of SC faults, a load torque observation is built to provide an accurate online load torque estimation. The experimental results show that the maximum remaining phase current can be limited to the rated current by the online FRML method. Additionally, the advantages of the FRML strategy in SC faults, that is, high torque output and low copper loss, are also simultaneously verified by experiments.

Citation

Wang, H., Gu, C., Zhao, W., Wang, S., Zhang, X., Buticchi, G., Gerada, C., & Zhang, H. (2024). Online Full Range Copper Loss Minimization for Single-phase Short-circuit Fault Tolerant Control in Five-phase PMSM. IEEE Transactions on Transportation Electrification, 10(2), 2777 - 2788. https://doi.org/10.1109/tte.2023.3296755

Journal Article Type Article
Acceptance Date Jul 12, 2023
Online Publication Date Jul 19, 2023
Publication Date 2024-06
Deposit Date Dec 13, 2024
Journal IEEE Transactions on Transportation Electrification
Electronic ISSN 2332-7782
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
Volume 10
Issue 2
Pages 2777 - 2788
DOI https://doi.org/10.1109/tte.2023.3296755
Keywords Five-phase permanent magnet machine (PMSM) , full-range minimum copper loss (FRML) strategy , short-circuit (SC) fault
Public URL https://nottingham-repository.worktribe.com/output/23220264
Publisher URL https://ieeexplore.ieee.org/document/10187906