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A new structure for line-start non-slotted axial-flux permanent magnet motor, proposing a novel 3D FEA-based demagnetization reduction approach

Hadi Karimi Aliabad (Electrical Engineering Research and Development Branch, Samen Pharmaceutical Company, Mashhad, Iran)
Mohammadreza Baghayipour (Faculty of Engineering, Kosar University of Bojnord, Bojnord, Iran)

COMPEL - The international journal for computation and mathematics in electrical and electronic engineering

ISSN: 0332-1649

Article publication date: 24 November 2022

Issue publication date: 23 November 2023

98

Abstract

Purpose

This paper aims to propose a novel simple and efficient structure for line-start axial-flux permanent magnet (LSAFPM) synchronous motor, especially regarding the permanent magnets (PMs) demagnetization reduction.

Design/methodology/approach

At first, a primitive raw scheme of the new structure for the LSAFPM motor is introduced. Considering this raw scheme, the levels of irreversible demagnetization in various regions throughout the entire volume of each PM are evaluated using 3 dimensional (3D) finite elements analysis (3D FEA) in full loading condition during startup until reaching steady state. Based on the results of these analyses, the primitive structural scheme is then modified through segmenting (cutting into four pieces) each PM from where the worst irreversible demagnetization levels occurred.

Findings

As will be demonstrated by the results of 3D FEA, the proposed modified structure is not only capable of successful startup and synchronization of the motor but also it considerably reduces the PM demagnetization level. Thus, the performance of the motor is significantly improved.

Originality/value

The demagnetization of PMs is an important effect in PM synchronous motors, which can greatly affect motor performance. Therefore, it is necessary to be considered in the motor design processes. This effect becomes much more significant in the line-start PM motors because the usual high-magnitude startup induction current produces a strong armature-reaction magnetic field, which may cause the PMs to be irreversibly demagnetized. The approach proposed in this paper provides a structural solution to mitigate the PM demagnetization effect and thereby improve the performance of an LSAFPM motor through modifying the structure of the LSAFPM motor according to an FEA-based PM demagnetization analysis. As a considerable contribution, in this analysis, the variation of demagnetization level between different areas inside each PM is computed and is considered as a basis for proposing an appropriate structural modification to mitigate the PM demagnetization effect as much as possible.

Keywords

Acknowledgements

The corresponding author was supported by the Kosar University of Bojnord under Grant 0104041372.

Citation

Karimi Aliabad, H. and Baghayipour, M. (2023), "A new structure for line-start non-slotted axial-flux permanent magnet motor, proposing a novel 3D FEA-based demagnetization reduction approach", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 42 No. 6, pp. 1225-1247. https://doi.org/10.1108/COMPEL-02-2022-0084

Publisher

:

Emerald Publishing Limited

Copyright © 2022, Emerald Publishing Limited

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