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Reduction of torque ripple in synchronous machines by quasi-skew-asymmetric rotor

机译:准偏斜不对称转子同步机中的扭矩脉动的减小

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Torque ripple and cogging torque are thoroughly studied phenomena that occur in permanent magnet synchronous machines (PMSM). They are highly unwanted because they cause extra vibrations and noise in the system. Therefore, special design methods of PMSMs are used to reduce the torque ripple and cogging torque. This paper introduces and discovers a new method for the reduction of the torque ripple and cogging torque by applying so called quasi-skew-asymmetric rotor structure. In the paper it is shown that this method achieves similar performance advantages as of the traditional stepped skewing method and can apply several quasi-skew steps without need to apply actual skewing. This helps to avoid extra complicity of the rotor structure and extra costs related to the skewing. Further, the proposed method is very robust in terms of appearing of unwanted torque ripple and cogging torque components if some motor parameters are changed (e.g. pole geometry, stator geometry or air gap flux density harmonics), compensating all the possible torque ripples and cogging torque in a similar manner as in a traditionally skewed machine.
机译:彻底研究了永磁同步机(PMSM)中发生的现象的扭矩纹波和齿槽扭矩。它们非常不必要,因为它们会在系统中造成额外的振动和噪音。因此,PMSM的特殊设计方法用于减少扭矩纹波和齿槽扭矩。本文介绍了一种通过施加所谓的准歪斜不对称转子结构来减少扭矩纹波和齿槽扭矩的新方法。在本文中,示出该方法实现了与传统的阶梯式偏斜方法一样类似的性能优势,并且可以在不需要施加实际偏斜的情况下应用几个准偏斜步骤。这有助于避免转子结构的额外共同性和与偏斜相关的额外成本。此外,如果改变了一些电动机参数(例如,极几何,定子几何形状或空气隙磁通密度谐波),则所提出的方法是非常稳健的,因为如果有一些电动机参数(例如,磁极几何,定子几何形状或气隙磁通密度谐波),则补偿所有可能的扭矩涟漪和齿槽扭矩以与传统倾斜机器类似的方式。

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