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Modeling and Investigation on Electromagnetic Noise in PM Motors With Single- and Double-Layer Concentrated Winding for EV and HEV Application

机译:PM电动机电磁噪声对EV和HEV应用中的电动机电磁噪声的建模与调查

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摘要

The radial force and the torque pulsation are identified as two main causes of electromagnetic noise and vibration in permanent magnet (PM) motors for electric vehicle (EV) and hybrid EVs systems. The aim of this paper is to systematically investigate the influence of pole and slot number combinations on noise and vibration characteristics of fractional-slot PM motors with either single-or double-layer concentrated windings. Preferentially, the explicit magnetic field equations are developed for analyzing the radial vibration force and the torque pulsation by the aid of Schwarz-Christoffel conformal mapping. Subsequently, an in-depth investigation of pole (2 p) and slot (Q(s)) number combinations is carried out to provide a detailed finding of noise behaviors due to the electromagnetic origins. The investigation on the electromagnetic noise is performed depending on the several major Spp families. Finally, the relationship between the vibration mode order and the torque variation is established to provide the comprehensive characteristics of the electromagnetic noise.
机译:径向力和扭矩脉动被识别为电动车辆(EV)和混合动力EVS系统的永磁体(PM)电机中电磁噪声和振动的两个主要原因。本文的目的是系统地研究极点和槽数组合对具有单层或双层集中绕组的分数槽PM电动机噪声和振动特性的影响。优选地,开发了显式磁场方程,用于通过施瓦茨·克里斯特法官保形映射来分析径向振动力和扭矩脉动。随后,进行对极(2P)和时隙(Q(S))数量组合的深入研究,以提供由于电磁起源引起的噪声行为的详细发现。根据几个主要的SPP系列进行电磁噪声的调查。最后,建立了振动模式顺序与扭矩变化之间的关系,以提供电磁噪声的综合特性。

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