LAPSE:2023.31900
Published Article
LAPSE:2023.31900
Effect of Pole Shoe Design on Inclination Angle of Different Magnetic Fields in Permanent Magnet Machines
April 19, 2023
Electromagnetic modelling of electrical machines through finite element analysis is an important design tool for detailed studies of high resolution. Through the usage of finite element analysis, one can study the electromagnetic fields for information that is often difficult to acquire in an experimental test bench. The requirement for accurate result is that the magnetic circuit is modelled in a correct way, which may be more difficult to maintain for rare earth free permanent magnets with an operating range that is more likely to be close to non-linear regions for the relation between magnetic flux density and magnetic field strength. In this paper, the inclination angles of the magnetic flux density, magnetic field strength and magnetization are studied and means to reduce the inclination angles are investigated. Both rotating and linear machines are investigated in this paper, with different current densities induced in the stator windings. By proper design of the pole shoes, one can reduce the inclination angles of the fields in the permanent magnet. By controlling the inclination angles, one can both enhance the performance of the magnetic circuit and increase the accuracy of simpler models for permanent magnet modelling.
Keywords
buried topology, ferrites, finite element analysis, inclined fields, linear machines, permanent magnets, pole shoe design, rotating machines
Subject
Suggested Citation
Sjölund J, Eriksson S. Effect of Pole Shoe Design on Inclination Angle of Different Magnetic Fields in Permanent Magnet Machines. (2023). LAPSE:2023.31900
Author Affiliations
Sjölund J: Department of Electrical Engineering, Division of Electricity, Uppsala University, 752 37 Uppsala, Sweden [ORCID]
Eriksson S: Department of Electrical Engineering, Division of Electricity, Uppsala University, 752 37 Uppsala, Sweden [ORCID]
Journal Name
Energies
Volume
14
Issue
9
First Page
2437
Year
2021
Publication Date
2021-04-24
Published Version
ISSN
1996-1073
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Original Submission
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PII: en14092437, Publication Type: Journal Article
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LAPSE:2023.31900
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doi:10.3390/en14092437
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Apr 19, 2023
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