LAPSE:2023.10357
Published Article
LAPSE:2023.10357
Electromagnetic Torque Analysis and Structure Optimization of Interior Permanent Magnet Synchronous Machine with Air-Gap Eccentricity
Jing Wang, Yubin Wang
February 27, 2023
Abstract
Interior permanent magnet synchronous machine with air-gap eccentricity (AGE-IPMSM) has the advantages of low torque ripple and low noise. However, air-gap eccentricity will lower the power density of the machine to a certain extent. In this paper, an 18-slot/8-pole interior permanent magnet synchronous machine with air-gap eccentricity is taken as the research object. According to the magnetic circuit method, the no-load and load air-gap magnetic field analytical models are calculated, respectively. Then, by Maxwell’s tensor method, the variation law of radial and tangential air-gap magnetic density harmonic amplitudes and phase angle difference cosine values are analyzed, and it is concluded that the electromagnetic torque can be improved by increasing phase angle difference cosine values of the magnetic density harmonic, which produces the driving torque after eccentricity. On this basis, in order to improve the output characteristics of the machine, the eccentricity and the angle between the V-type permanent magnets are optimized with the total harmonic distortion (THD), electromagnetic torque, and torque ripple as the optimization goals, and then the optimal structure size parameters of the machine are finally determined. Finally, a prototype is manufactured on the basis of the optimal parameters, and the experimental results of the prototype verify the validity and correctness of the theoretical analysis and finite element analysis (FEA).
Keywords
air-gap eccentricity, analysis of torque harmonic, IPM synchronous machine, Maxwell’s tensor method
Suggested Citation
Wang J, Wang Y. Electromagnetic Torque Analysis and Structure Optimization of Interior Permanent Magnet Synchronous Machine with Air-Gap Eccentricity. (2023). LAPSE:2023.10357
Author Affiliations
Wang J: College of New Energy, China University of Petroleum (East China), Qingdao 266580, China
Wang Y: College of New Energy, China University of Petroleum (East China), Qingdao 266580, China [ORCID]
Journal Name
Energies
Volume
16
Issue
4
First Page
1665
Year
2023
Publication Date
2023-02-07
ISSN
1996-1073
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Original Submission
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PII: en16041665, Publication Type: Journal Article
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