Energies, Vol. 18, Pages 4971: Investigation of Design Parameters for Improving Efficiency in Interior Permanent Magnet Synchronous Machines
Energies, Vol. 18, Pages 4971: Investigation of Design Parameters for Improving Efficiency in Interior Permanent Magnet Synchronous Machines
Energies doi: 10.3390/en18184971
Authors:
Soo-Jin Lee
Seok-Hyeon Eom
Manh-Dung Nguyen
Jun-Ho Jang
Yeon-Tae Choi
Dae-Hyun Lee
Jang-Young Choi
Kyung-Hun Shin
This study focuses on improving the efficiency of interior permanent magnet synchronous motors (IPMSMs) for electric vehicle (EV) compressors. Seven rotor topologies (B, dB, V, dV, D, U, and UV) were first compared, among which the U-type rotor demonstrated the highest efficiency and the lowest total loss. Subsequently, the influence of the turn number and rotor outer diameter (ROD) on the shift of the high-efficiency region was analyzed, and six key design variables were identified through Pearson correlation-based sensitivity analysis. Using these variables, a multi-objective optimization was performed in Ansys OptiSLang, which improved the integrated part load value (IPLV)-weighted efficiency from 91.05% to 92.29% and shifted the high-efficiency region closer to the main operating point. Experimental validation of the reference model confirmed the reliability of the FEM analysis, and the proposed optimal design is expected to enhance low-speed efficiency and reduce battery energy consumption in EV compressor applications.
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