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Distortion of Back-EMF and Torque of PM Brushless Machines Due to Eccentricity

机译:偏心引起的反电动势失真和永磁无刷电机的转矩

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The paper investigates the influence of slot/pole number combination and winding configuration on the electromagnetic performance, such as flux density, back-EMF and electromagnetic torque, of permanent magnet machines having static or rotating rotor eccentricities. It shows that the eccentricity does not affect the back-EMF and electromagnetic torque of rotational symmetrical machines whose configuration repeats every certain amount of angle. However, it significantly distorts the back-EMF and torque waveforms of rotational asymmetric machines. Further, the static eccentricity does not change the harmonic contents of back-EMF, but results in unbalanced three phase back-EMF. Hence, the temporal order of the main torque ripple due to the static eccentricity is equal to the pole number. On the other hand, the rotating eccentricity results in more back-EMF harmonics of orders equal to the PM magnetisation order plus/minus one. Therefore, the temporal order of the main torque ripple due to the rotating eccentricity is equal to the triplen number closest to the pole number. The prediction is validated by the experiment.
机译:本文研究了槽/极数组合和绕组配置对具有静态或旋转转子偏心率的永磁电机的电磁性能(例如磁通密度,反电动势和电磁转矩)的影响。它表明偏心距不会影响旋转对称电机的反电动势和电磁转矩,该对称结构的配置每隔一定角度重复一次。但是,它极大地扭曲了旋转不对称电机的反电动势和转矩波形。此外,静态偏心率不会改变反电动势的谐波含量,但会导致三相反电动势不平衡。因此,由于静态偏心引起的主转矩脉动的时间顺序等于极数。另一方面,旋转偏心会导致产生更多的反电动势谐波,这些谐波的阶次等于PM磁化阶次的正负。因此,由于旋转偏心引起的主转矩脉动的时间顺序等于最接近极数的三重数。该预测已通过实验验证。

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