A Novel High-Performance Field-Weakening Control for Axial Flux-Switching Permanent-Magnet Motor
By combining the field-weakening control principle of a new axial flux-switching permanent-magnet motor (AFFSSPM) with the space vector pulse width modulation (SVPWM) and maximum torque per voltage (MTPV) control principle, a novel field-weakening control strategy for AFFSSPM is proposed in this pap...
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Format: | Article |
Language: | English |
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Iran University of Science and Technology
2020-03-01
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Series: | Iranian Journal of Electrical and Electronic Engineering |
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Online Access: | http://ijeee.iust.ac.ir/article-1-1542-en.html |
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author | J. Rahmani Fard |
author_facet | J. Rahmani Fard |
author_sort | J. Rahmani Fard |
collection | DOAJ |
description | By combining the field-weakening control principle of a new axial flux-switching permanent-magnet motor (AFFSSPM) with the space vector pulse width modulation (SVPWM) and maximum torque per voltage (MTPV) control principle, a novel field-weakening control strategy for AFFSSPM is proposed in this paper. In the first stage of the field-weakening, the difference between the reference voltage updated by the current regulator and the saturated voltage output with SVPWM is used for field-weakening control, which modifies the direct axis of stator current. This method makes full use of the DC bus voltage, and can naturally smooth transition. In the second stage of the field weakening, the principle of MTPV control is used for field-weakening control, and then, being linearized. Compared with the traditional method, this method solves the problem of depth weakening of AFFSSPM. Between the two stages, the turning speed is used for the switch condition to achieve a smooth transition. The effectiveness and correctness of the proposed field-weakening control method and calculation method were verified with simulation results. Moreover, the dSPACE semi-physical simulation experimental platform for the hardware design and software design is used, and the semi-physical simulation experiment is carried out. The results show the accuracy and effectiveness of the proposed scheme. |
first_indexed | 2024-12-14T19:10:30Z |
format | Article |
id | doaj.art-e3b2af87b33e473fab48805ce1d7dbc4 |
institution | Directory Open Access Journal |
issn | 1735-2827 2383-3890 |
language | English |
last_indexed | 2024-12-14T19:10:30Z |
publishDate | 2020-03-01 |
publisher | Iran University of Science and Technology |
record_format | Article |
series | Iranian Journal of Electrical and Electronic Engineering |
spelling | doaj.art-e3b2af87b33e473fab48805ce1d7dbc42022-12-21T22:50:44ZengIran University of Science and TechnologyIranian Journal of Electrical and Electronic Engineering1735-28272383-38902020-03-011613947A Novel High-Performance Field-Weakening Control for Axial Flux-Switching Permanent-Magnet MotorJ. Rahmani Fard0 Department of Power Engineering, Faculty of Electrical Engineering, Pooyesh Institute of Higher Education, Qom, Iran. By combining the field-weakening control principle of a new axial flux-switching permanent-magnet motor (AFFSSPM) with the space vector pulse width modulation (SVPWM) and maximum torque per voltage (MTPV) control principle, a novel field-weakening control strategy for AFFSSPM is proposed in this paper. In the first stage of the field-weakening, the difference between the reference voltage updated by the current regulator and the saturated voltage output with SVPWM is used for field-weakening control, which modifies the direct axis of stator current. This method makes full use of the DC bus voltage, and can naturally smooth transition. In the second stage of the field weakening, the principle of MTPV control is used for field-weakening control, and then, being linearized. Compared with the traditional method, this method solves the problem of depth weakening of AFFSSPM. Between the two stages, the turning speed is used for the switch condition to achieve a smooth transition. The effectiveness and correctness of the proposed field-weakening control method and calculation method were verified with simulation results. Moreover, the dSPACE semi-physical simulation experimental platform for the hardware design and software design is used, and the semi-physical simulation experiment is carried out. The results show the accuracy and effectiveness of the proposed scheme.http://ijeee.iust.ac.ir/article-1-1542-en.htmlflux-switching permanent-magnet motorfield-weakening controlmtpvstability. |
spellingShingle | J. Rahmani Fard A Novel High-Performance Field-Weakening Control for Axial Flux-Switching Permanent-Magnet Motor Iranian Journal of Electrical and Electronic Engineering flux-switching permanent-magnet motor field-weakening control mtpv stability. |
title | A Novel High-Performance Field-Weakening Control for Axial Flux-Switching Permanent-Magnet Motor |
title_full | A Novel High-Performance Field-Weakening Control for Axial Flux-Switching Permanent-Magnet Motor |
title_fullStr | A Novel High-Performance Field-Weakening Control for Axial Flux-Switching Permanent-Magnet Motor |
title_full_unstemmed | A Novel High-Performance Field-Weakening Control for Axial Flux-Switching Permanent-Magnet Motor |
title_short | A Novel High-Performance Field-Weakening Control for Axial Flux-Switching Permanent-Magnet Motor |
title_sort | novel high performance field weakening control for axial flux switching permanent magnet motor |
topic | flux-switching permanent-magnet motor field-weakening control mtpv stability. |
url | http://ijeee.iust.ac.ir/article-1-1542-en.html |
work_keys_str_mv | AT jrahmanifard anovelhighperformancefieldweakeningcontrolforaxialfluxswitchingpermanentmagnetmotor AT jrahmanifard novelhighperformancefieldweakeningcontrolforaxialfluxswitchingpermanentmagnetmotor |