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Development and comparison of double-stator memory machines with parallel hybrid magnets.

Authors :
Peng, Cheng
Cheng, He
Zhang, Tong
Wu, Jing
Lin, Fandi
Chu, Jinglong
Source :
COMPEL. 2023, Vol. 42 Issue 6, p1833-1851. 19p.
Publication Year :
2023

Abstract

Purpose: This paper aims to further develop stator permanent magnet (PM) type memory machines by providing generalized design guidelines for double-stator memory machines (DSMMs) with hybrid PMs. This paper discusses the design experience of DSMMs and presents a comparative study of radial magnetization (RM) and circumferential magnetization (CM) types. Design/methodology/approach: It begins with an introduction to RM and CM operating principles and magnetization mechanisms. Then, a comparative study is conducted for one of the RM-DSMM rotor pole pairs, inner and outer stator clamping angles and low coercive force PMs thickness. Finally, the two machines' finite element simulation performance is compared. The validity of the proposed machine structure is demonstrated. Findings: In this paper, the double-stator structure is extended to parallel hybrid PM memory machines, and two novel DSMMs with RM and CM configurations are proposed. Two types of DSMMs have PMs and magnetizing windings on the inner stator and armature windings on the outer stator. The main difference between the two is the arrangement of PMs on the inner stator. Originality/value: Conventional stator PM memory machines have geometrical space conflicts between the PM and armature windings. The proposed double-stator structure can alleviate these conflicts and increase the torque density accordingly. In addition, this paper contributes to comparing the arrangement of hybrid PMs for DSMMs. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03321649
Volume :
42
Issue :
6
Database :
Academic Search Index
Journal :
COMPEL
Publication Type :
Periodical
Accession number :
173776155
Full Text :
https://doi.org/10.1108/COMPEL-04-2023-0168