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Numerical shape design characteristics of torque ripple reduction for Interior Permanent Magnet Synchronous Motor

机译:内装永磁同步电动机转矩脉动减小的数值形状设计特征

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摘要

In this paper, the research on shape design of Interior Permanent Magnet Synchronous Motor (IPMSM) aimed for torque ripple reduction, applied for Hybrid Electric Vehicle (HEV), has been addressed through numerical analysis of non-linear electromagnetic field based on Finite Element Method (FEM). From the initial model with 6-pole, 9-slot, and concentrated winding, numerical design characteristics on torque ripple reduction in accordance with various structural configurations of stator tooth, rotor notch shape, and PM barrier are investigated. Moreover, the designed model which minimizes torque ripple is proposed and its characteristics are validated with comparison of the initial model with respect to Back-EMF Total Harmonics Distortion (THD), radial force density, cogging torque, spatial and time harmonics of torque ripple computed via numerical co-simulation with inverter.
机译:通过基于有限元方法的非线性电磁场数值分析,研究了应用于混合动力汽车(HEV)的旨在减小转矩脉动的内装永磁同步电动机(IPMSM)的形状设计问题。 (FEM)。从具有6极,9槽和集中绕组的初始模型,研究了根据定子齿,转子槽口形状和PM挡板的各种结构配置而减小转矩脉动的数值设计特征。此外,提出了最小化转矩脉动的设计模型,并通过与初始模型的反电动势总谐波失真(THD),径向力密度,齿槽转矩,计算出的转矩脉动的空间和时间谐波进行比较,验证了其特性。通过与变频器的数值联合仿真。

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