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Investigation of radial electromagnetic force density and vibration in a fractional-slot interior permanent magnet synchronous machine

机译:分数槽内部永磁同步电机的径向电磁力密度和振动研究

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This paper investigates the radial electromagnetic force density and the associated vibration of an interior permanent magnet synchronous machine (IPMSM) with fractional-slot concentrated winding (FSCW) configuration. Interactions between magneto-motive force (MMF) harmonics, stator slotting effect, and rotor saliency effect will generate various air-gap magnetic field components, as well as radial electromagnetic force density harmonics. To develop an efficient yet realistic mechanism for the understanding of the force and vibration issues of the IPMSM under study, a combination of static two-dimensional (2-D) finite element analysis (FEA) and analytical methods is used to model the low order spatial harmonics of the machine's radial electromagnetic force density. The validity of the proposed approach is confirmed by the results from the high fidelity comprehensive transient 2-D FEA and 2-D fast Fourier transformation (FFT) methods. Moreover, comprehensive mechanical FEA are employed to carry out free and forced vibration investigations of the machine, which are verified by the experimental results.
机译:本文研究了带有分数槽集中绕组(FSCW)配置的内部永磁同步电机(IPMSM)的径向电磁力密度和相关的振动。电动势(MMF)谐波,定子开槽效应和转子显着效应之间的相互作用将产生各种气隙磁场分量以及径向电磁力密度谐波。为了开发一种有效而现实的机制来理解所研究的IPMSM的力和振动问题,将静态二维(2-D)有限元分析(FEA)与分析方法结合使用来对低阶进行建模电机径向电磁力密度的空间谐波。高保真全面瞬态二维FEA和二维快速傅立叶变换(FFT)方法的结果证实了该方法的有效性。此外,综合的机械有限元分析用于对机器进行自由振动和强制振动研究,实验结果证明了这一点。

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