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Influence of pole and slot number combinations on cogging torque in permanent magnet machines with static and rotating eccentricities

机译:极数和槽数组合对带有静态和旋转偏心的永磁电机的齿槽转矩的影响

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With aid of finite element and analytical methods, this paper investigates the influence of static/rotating eccentricities on the cogging torque of permanent magnet machines having various pole/slot number combinations (2p/Ns), including fractional-slot topologies, such as 2p=Ns±1, 2p=Ns±2 and 2p/Ns=8/12, as well as an integer-slot machine 2p/Ns=4/12. It is found that the influence of eccentricity reduces significantly with the number of structure cyclic symmetry, which is equal to the greatest common divisor of slot and pole numbers. Hence, the eccentricity shows the largest influence in machines having 2p=Ns±1, relatively large influence in machines having 2p=Ns±2, but very small influence in the other machines. As for machines having 2p=Ns±1 and 2p=Ns±2, the static and rotating eccentricities result in (2p)th and (Ns)th order cogging torque components, respectively. Both static and rotating eccentricities produce similar cogging torque magnitude. The experimental results validate the FE and analytical investigation.
机译:借助有限元和分析方法,本文研究了静态/旋转偏心率对具有不同极/槽数组合(2p / Ns)的永磁电机齿槽转矩的影响,包括分数槽拓扑,例如2p = Ns±1、2p = Ns±2和2p / Ns = 8/12,以及整数老虎机2p / Ns = 4/12。发现偏心率的影响随着结构循环对称数的增加而显着减小,这等于缝隙和极数的最大公约数。因此,偏心率在具有2p = Ns±1的机器中显示最大的影响,在具有2p = Ns±2的机器中显示相对较大的影响,而在其他机器中影响很小。对于具有2p = Ns±1和2p = Ns±2的机器,静态和旋转偏心率分别导致第(2p)和(Ns)级齿槽转矩分量。静态和旋转偏心率都产生相似的齿槽转矩大小。实验结果验证了有限元分析方法的有效性。

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