Fault-Tolerant Analysis and Design of AFPMSM With Multi-Disc Type Coreless Open-End Winding
This article presents a multi-disc coreless axial flux permanent magnet synchronous machine (MDC-AFPMSM) with N pole and S pole type series magnetic circuit and open-end winding for high reliability applications, such as small power actuator system. Firstly, the topology and driving modes of MDC-AFP...
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IEEE
2020-01-01
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Series: | IEEE Access |
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Online Access: | https://ieeexplore.ieee.org/document/9201476/ |
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author | Xiaoguang Wang Meng Zhao Lei Tang Wei Xu Md. Rabiul Islam |
author_facet | Xiaoguang Wang Meng Zhao Lei Tang Wei Xu Md. Rabiul Islam |
author_sort | Xiaoguang Wang |
collection | DOAJ |
description | This article presents a multi-disc coreless axial flux permanent magnet synchronous machine (MDC-AFPMSM) with N pole and S pole type series magnetic circuit and open-end winding for high reliability applications, such as small power actuator system. Firstly, the topology and driving modes of MDC-AFPMSM are presented in details. In this article, a multi-objective optimization function is proposed to design the machine with full consideration of various influence factors. The drive performance indexes of four-phase, five-phase and six-phase machines are analyzed and discussed. Furthermore, main parameters of the five-phase MDC-AFPMSM with open-end winding are calculated. In order to reduce the torque ripple, the air gap magnetic flux is optimized. Finally, the operation characteristics under short-circuit and open-circuit faults are fully analyzed based on the three-dimensional (3D) finite element algorithm. Comprehensive simulation results and theoretical analysis have demonstrated that the open-end winding MDC-AFPMSM has much stronger fault-tolerant ability in comparison to that of conventional machines. |
first_indexed | 2024-12-17T05:00:35Z |
format | Article |
id | doaj.art-2aacce43279242e985480ce9c3568bac |
institution | Directory Open Access Journal |
issn | 2169-3536 |
language | English |
last_indexed | 2024-12-17T05:00:35Z |
publishDate | 2020-01-01 |
publisher | IEEE |
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series | IEEE Access |
spelling | doaj.art-2aacce43279242e985480ce9c3568bac2022-12-21T22:02:34ZengIEEEIEEE Access2169-35362020-01-01817174417175310.1109/ACCESS.2020.30252149201476Fault-Tolerant Analysis and Design of AFPMSM With Multi-Disc Type Coreless Open-End WindingXiaoguang Wang0https://orcid.org/0000-0002-3036-1611Meng Zhao1https://orcid.org/0000-0002-0427-1946Lei Tang2https://orcid.org/0000-0001-6324-2101Wei Xu3https://orcid.org/0000-0002-8073-7285Md. Rabiul Islam4https://orcid.org/0000-0003-3133-9333Hubei Key Laboratory for High-Efficiency Utilization of Solar Energy and Operation Control of Energy Storage System, Hubei University of Technology, Wuhan, ChinaHubei Key Laboratory for High-Efficiency Utilization of Solar Energy and Operation Control of Energy Storage System, Hubei University of Technology, Wuhan, ChinaSchool of Electrical Engineering, Southwest Jiaotong University, Chengdu, ChinaState Key Laboratory of Advanced Electromagnetic Engineering and Technology, School of Electrical and Electronic Engineering, Huazhong University of Science and Technology, Wuhan, ChinaSchool of Electrical, Computer and Telecommunications Engineering, University of Wollongong, Wollongong, NSW, AustraliaThis article presents a multi-disc coreless axial flux permanent magnet synchronous machine (MDC-AFPMSM) with N pole and S pole type series magnetic circuit and open-end winding for high reliability applications, such as small power actuator system. Firstly, the topology and driving modes of MDC-AFPMSM are presented in details. In this article, a multi-objective optimization function is proposed to design the machine with full consideration of various influence factors. The drive performance indexes of four-phase, five-phase and six-phase machines are analyzed and discussed. Furthermore, main parameters of the five-phase MDC-AFPMSM with open-end winding are calculated. In order to reduce the torque ripple, the air gap magnetic flux is optimized. Finally, the operation characteristics under short-circuit and open-circuit faults are fully analyzed based on the three-dimensional (3D) finite element algorithm. Comprehensive simulation results and theoretical analysis have demonstrated that the open-end winding MDC-AFPMSM has much stronger fault-tolerant ability in comparison to that of conventional machines.https://ieeexplore.ieee.org/document/9201476/Axial flux permanent magnet synchronous machinecorelessfault-tolerancemulti-objective optimizationopen-end winding |
spellingShingle | Xiaoguang Wang Meng Zhao Lei Tang Wei Xu Md. Rabiul Islam Fault-Tolerant Analysis and Design of AFPMSM With Multi-Disc Type Coreless Open-End Winding IEEE Access Axial flux permanent magnet synchronous machine coreless fault-tolerance multi-objective optimization open-end winding |
title | Fault-Tolerant Analysis and Design of AFPMSM With Multi-Disc Type Coreless Open-End Winding |
title_full | Fault-Tolerant Analysis and Design of AFPMSM With Multi-Disc Type Coreless Open-End Winding |
title_fullStr | Fault-Tolerant Analysis and Design of AFPMSM With Multi-Disc Type Coreless Open-End Winding |
title_full_unstemmed | Fault-Tolerant Analysis and Design of AFPMSM With Multi-Disc Type Coreless Open-End Winding |
title_short | Fault-Tolerant Analysis and Design of AFPMSM With Multi-Disc Type Coreless Open-End Winding |
title_sort | fault tolerant analysis and design of afpmsm with multi disc type coreless open end winding |
topic | Axial flux permanent magnet synchronous machine coreless fault-tolerance multi-objective optimization open-end winding |
url | https://ieeexplore.ieee.org/document/9201476/ |
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