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Investigation of torque production and torque ripple reduction method for 6-stator/7-rotor-pole variable flux reluctance machines

机译:6定子/ 7转子极可变磁阻电机的转矩产生和转矩脉动减小方法的研究

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This paper investigates the torque production and the torque ripple reduction of 6-stator/7-rotor-pole (6/7) variable flux reluctance machine (VFRM). Based on the harmonic analysis, the instantaneous torque equation is firstly derived by considering the spectra of the armature inductance and current. The average torque is found to be mainly produced by the mutual inductances between the field and armature windings. Since the armature coils in each phase have opposite polarity connection 6/7 VFRM, the even order harmonics of self-inductances and odd order harmonics in mutual inductances between the field and armature windings are eliminated. It results in the elimination of the third harmonic torque ripple, while a multiple of the sixth harmonic torque ripple exists. In order to mitigate the torque ripple, the harmonic current injection method is proposed and applied to the field winding, instead of armature windings. Two methods, i.e., finite element analysis (FEA) based and analytical equation based methods, are proposed to calculate the amplitude of the injected harmonic current. The performance of the proposed methods is verified by both FEA and experiment.
机译:本文研究了6定子/ 7转子极数(6/7)可变磁通磁阻电机(VFRM)的转矩产生和转矩脉动减小。在谐波分析的基础上,首先考虑电枢电感和电流频谱,推导出瞬时转矩方程。发现平均转矩主要由励磁绕组和电枢绕组之间的互感产生。由于各相的电枢线圈具有相反的极性连接6/7 VFRM,因此消除了励磁绕组与电枢绕组之间互感的自感的偶数谐波和奇数次谐波。这导致消除了三次谐波转矩脉动,而存在第六次谐波转矩脉动的倍数。为了减轻转矩脉动,提出了谐波注入方法,并将其应用于励磁绕组,而不是电枢绕组。提出了两种方法,即基于有限元分析(FEA)和基于解析方程的方法来计算注入的谐波电流的幅度。有限元分析和实验验证了所提方法的性能。

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