Suspension principle and verification of 6/4 pole bearingless switched reluctance motor with permanent magnets in its stator yoke

In order to overcome the disadvantages of 12/8 pole bearingless switched reluctance motors (BSRMs), such as high commutation frequency, more stator windings, and more power devices, a 6/4 pole BSRM with half the commutation frequency and number of windings is studied. The structure characteristics a...

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Main Authors: YiFei Yang, RenZhong Wang, XiaoBin Zhu
Format: Article
Language:English
Published: AIP Publishing LLC 2021-11-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/5.0072189
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author YiFei Yang
RenZhong Wang
XiaoBin Zhu
author_facet YiFei Yang
RenZhong Wang
XiaoBin Zhu
author_sort YiFei Yang
collection DOAJ
description In order to overcome the disadvantages of 12/8 pole bearingless switched reluctance motors (BSRMs), such as high commutation frequency, more stator windings, and more power devices, a 6/4 pole BSRM with half the commutation frequency and number of windings is studied. The structure characteristics and operation characteristics of the 6/4 pole BSRM are investigated through modeling, simulation, and prototype experiment, and the main performance indices, such as suspension force, inductance performance, and air-gap flux density, are evaluated to reveal the levitation control mechanism of the 6/4 pole BSRM with permanent magnets in its stator yoke. The motor can suspend stably in the radial direction, and the correctness and feasibility of the theoretical analysis are verified.
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spelling doaj.art-2a0dc2436e32428cbb73da3d08f9c4da2022-12-21T23:00:25ZengAIP Publishing LLCAIP Advances2158-32262021-11-011111115106115106-710.1063/5.0072189Suspension principle and verification of 6/4 pole bearingless switched reluctance motor with permanent magnets in its stator yokeYiFei Yang0RenZhong Wang1XiaoBin Zhu2School of Mechanical and Electrical Engineering, Suzhou Vocational University, Suzhou 215104, ChinaSchool of Mechanical and Electrical Engineering, Suzhou Vocational University, Suzhou 215104, ChinaSchool of Mechanical and Electrical Engineering, Suzhou Vocational University, Suzhou 215104, ChinaIn order to overcome the disadvantages of 12/8 pole bearingless switched reluctance motors (BSRMs), such as high commutation frequency, more stator windings, and more power devices, a 6/4 pole BSRM with half the commutation frequency and number of windings is studied. The structure characteristics and operation characteristics of the 6/4 pole BSRM are investigated through modeling, simulation, and prototype experiment, and the main performance indices, such as suspension force, inductance performance, and air-gap flux density, are evaluated to reveal the levitation control mechanism of the 6/4 pole BSRM with permanent magnets in its stator yoke. The motor can suspend stably in the radial direction, and the correctness and feasibility of the theoretical analysis are verified.http://dx.doi.org/10.1063/5.0072189
spellingShingle YiFei Yang
RenZhong Wang
XiaoBin Zhu
Suspension principle and verification of 6/4 pole bearingless switched reluctance motor with permanent magnets in its stator yoke
AIP Advances
title Suspension principle and verification of 6/4 pole bearingless switched reluctance motor with permanent magnets in its stator yoke
title_full Suspension principle and verification of 6/4 pole bearingless switched reluctance motor with permanent magnets in its stator yoke
title_fullStr Suspension principle and verification of 6/4 pole bearingless switched reluctance motor with permanent magnets in its stator yoke
title_full_unstemmed Suspension principle and verification of 6/4 pole bearingless switched reluctance motor with permanent magnets in its stator yoke
title_short Suspension principle and verification of 6/4 pole bearingless switched reluctance motor with permanent magnets in its stator yoke
title_sort suspension principle and verification of 6 4 pole bearingless switched reluctance motor with permanent magnets in its stator yoke
url http://dx.doi.org/10.1063/5.0072189
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AT xiaobinzhu suspensionprincipleandverificationof64polebearinglessswitchedreluctancemotorwithpermanentmagnetsinitsstatoryoke