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Sensitivity of manufacturing tolerances on cogging torque in interior permanent magnet machines with different slot/pole number

机译:具有不同槽/极数的内部永磁电机中齿槽转矩的制造公差敏感性

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摘要

The cogging torque is usually very sensitive to the manufacturing tolerances during machine mass production, and this paper investigates the different sensitivities between interior permanent magnet (IPM) machines with different slot/pole number combinations. Exemplified by two typical combinations, i.e. 12-slot/8-pole and 12-slot/10-pole designs, the fundamental performance is firstly analyzed under ideal conditions. Then, with the tolerances of PM diversity and tooth-bulges considered, the most sensitive cases are identified for the two machines respectively, based on which the ultimate values of additional cogging torques are obtained and compared. In order to verify the different sensitivities, the field spatial harmonics in the two machines with and without considering the tolerances are further analyzed, from which the different origins of additional cogging torque components can be obtained respectively. Finally, the IPM prototypes with and without amplified tolerances are fabricated and tested to verify the analyses.
机译:齿槽转矩通常对机器批量生产期间的制造公差非常敏感,因此本文研究了具有不同槽/极数组合的内部永磁(IPM)机器之间的不同灵敏度。以两个典型的组合(即12槽/ 8极和12槽/ 10极设计)为例,首先在理想条件下分析基本性能。然后,在考虑了PM多样性和齿鼓胀的公差的情况下,分别为两台机器确定了最敏感的情况,在此基础上,获得并比较了其他齿槽转矩的最终值。为了验证不同的灵敏度,在不考虑公差的情况下,进一步分析了两台机器中的磁场空间谐波,从中可以分别获得额外的齿槽转矩分量的不同来源。最终,制造并测试了带有和不带有放大公差的IPM原型,以验证分析结果。

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