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Design of a Novel IPMSM Bridge for Torque Ripple Reduction

机译:扭矩纹波减少新型IPMSM桥梁设计

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The interior permanent magnet synchronous motor uses a barrier structure to block the magnetic flux circulating inside the rotor and to send the magnetic flux into the air gap. Although the airgap magnetic flux density can be increased through the barrier, there is the disadvantage of increased torque ripple. Thus, this study is conducted to determine whether the torque ripple could be reduced by changing the barrier shape. The problem here is that the torque inevitably decreases when the torque ripple is decreased. Therefore, in this study, a novel shape of the bridge is proposed in a model in which the torque ripple is reduced but the torque is not. The notch structure is applied to the bridge and is analyzed through finite-element method analysis. To intuitively express the relationship between the torque and the torque ripple, a torque efficiency factor is devised, and as a result, the torque is maintained but the torque ripple is reduced.
机译:内部永磁同步电动机使用屏障结构阻挡循环内部的磁通量并将磁通量发送到气隙中。尽管气隙磁通密度可以通过屏障增加,但是增加扭矩波动的缺点。因此,进行该研究以通过改变屏障形状来确定是否可以降低扭矩脉动。这里的问题在于,当扭矩脉动减小时,扭矩不可避免地降低。因此,在本研究中,在扭矩脉动的模型中提出了桥的新颖形状,但是扭矩不是。凹口结构应用于桥梁,并通过有限元方法分析分析。为了直观地表达扭矩和扭矩脉动之间的关系,设计了扭矩效率因子,结果,保持扭矩,但是扭矩脉动减小。

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