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Torque Improvement of Dual Three-Phase Permanent Magnet Machine Using Zero Sequence Components

机译:利用零序分量改善双三相永磁电机的转矩

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This paper investigates the interaction of the zero sequence component into both permanent magnet (PM) shape and phase current to improve the output torque in dual three-phase surface-mounted PM (SPM) machines. The optimal zero sequence components are analytically derived and validated by finite element (FE) analyses. It is found that the optimal zero sequence components into both PM shape and current waveform are dependent on the fundamental and zero sequence harmonic winding factors. For the dual three-phase SPM machines having rotors without shaping, Sine shape, Sine shape with the zero sequence components, the electromagnetic performances including the back electromotive force (EMF) waveform, cogging torque, average torque, and torque ripple are compared. It is demonstrated that the average torque with the optimal zero sequence component in PM shaping and current waveform can be improved by >30% while the torque ripple remains similar to that of the one with Sine shaping. Finally, the experiments are given to verify both the analytical and FE analysis.
机译:本文研究了零序分量到永磁体(PM)形状和相电流中的相互作用,以改善双相三相表面贴装PM(SPM)机器的输出转矩。最佳零序分量是通过有限元(FE)分析进行分析得出和验证的。发现在PM形状和电流波形中的最佳零序分量都取决于基波和零序谐波绕组因子。对于具有不带零序分量的转子,正弦形状,正弦形状的双三相SPM电机,比较了电磁性能,包括反电动势(EMF)波形,齿槽转矩,平均转矩和转矩脉动。结果表明,在PM整形和电流波形中具有最佳零序分量的平均转矩可以提高> 30%,而转矩脉动仍与正弦整形的转矩脉动相似。最后,给出实验以验证分析和有限元分析。

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