Mitigation of UMP Components by the Parallel Stator Windings in Eccentric-rotor Electrical Machines

A. Burakov, A. Arkkio
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引用次数: 2

Abstract

In this paper, electromagnetic force acting between the stator and eccentric rotor of an induction machine is computed in a wide whirling frequency range and resolved into several components originating from different sources. Effects of the parallel stator windings on these eccentricity force components are investigated. The results of this study showed that the parallel stator windings effectively attenuate the net eccentricity force by suppressing significantly the eccentricity harmonics arising from the modulation of the fundamental magnetomotive force by the permeance wave due to rotor eccentricity. Slotting harmonics, also considerably contributing to the net eccentricity force, are mitigated evenly in the whole whirling frequency range studied, although not to such a great degree as the eccentricity harmonics. It was shown that the reduction of slotting and eccentricity fields accounts for the major part of the unbalanced magnetic pull mitigation by the parallel stator windings.
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偏心转子电机中并联定子绕组对UMP元件的影响
本文在较宽的旋转频率范围内计算了感应电机定子和偏心转子之间的电磁力,并将其分解为不同来源的几个分量。研究了并联定子绕组对偏心力分量的影响。研究结果表明,并联定子绕组通过显著抑制由转子偏心引起的磁导波调制基态磁动势所产生的偏心谐波,有效地减弱了净偏心力。开槽谐波对净偏心力也有相当大的贡献,在研究的整个旋转频率范围内,开槽谐波得到了均匀的缓解,尽管没有偏心谐波那么大。结果表明,槽场和偏心场的减小是并联定子绕组消除不平衡磁拉力的主要原因。
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