Performance Analysis of Outer Rotor Flux Reversal Machine at Different Rotor Poles

Naseer Ahmad, Tahsinullah, Shoaib Ahmed, Haris Shahbaz, Surat Khan
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Abstract

Research on flux reversal machine is taking importance day by day because of its unique characteristics. This research through light over different performance of flux reversal machine like three-phase flux linkage, cogging torque, back EMF, average torque, self, and mutual inductance. Moreover, average torque vs stack length and torque ripple is analyzed at different rotor pole and noticed a tremendous shift in performance with changing the number of magnet pairs per pole and observed that two-pairs (4-PM) of PM per pole gives the best result then a pair (2-PM) of PM per pole. All the analysis is done under the same condition, parameters, and materials. As a result, it is concluded that 10-pole model gives higher torque density and better average torque, but with high spicks then 11,13 and 17-pole model. In terms of average torque, the 10-pole model is dominant overall with 3.30Nm (17.097%) higher than 13-pole model, followed by 11-pole model with average torque value of 2.656Nm, while the 17-pole model produce the lowest average torque but spike less. At the end average torque is briefly discussed with respect to current density and stack length.
外转子磁通反转电机在不同转子极下的性能分析
磁通反转电机由于其独特的特性,其研究日益受到重视。本文通过对磁通换向机的三相磁链、齿槽转矩、反电动势、平均转矩、自感和互感等不同性能的研究。此外,对不同转子极的平均转矩与堆长和转矩脉动进行了分析,并注意到随着每极磁体对数量的变化,性能发生了巨大变化,并观察到每极两对(4-PM)磁体比每极一对(2-PM)磁体的效果最好。所有的分析都是在相同的条件、参数和材料下完成的。结果表明,10极模型比11、13和17极模型具有更高的转矩密度和更好的平均转矩,但具有较高的峰值。平均转矩方面,10极模型总体上占主导地位,比13极模型高3.30Nm(17.097%),其次是11极模型,平均转矩为2.656Nm, 17极模型平均转矩最低,但峰值较小。最后简要讨论了平均转矩与电流密度和堆长的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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