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Torque ripple minimization technique in fractional-slot PM brushless machines

机译:分数槽永磁无刷电机中的转矩脉动最小化技术

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This paper presents a technique to reduce torque ripple in a fractional-slot PM brushless machine. A 12-slot/10-pole machine equipped with various stators design is the subject of investigation. A better torque performance at rated condition is desirable when additional permanent magnets are inserted on the stator part. The design optimization process on motor topology is performed in order to obtain the best torque performance. It is shown that significant reduction of torque ripple is achieved without losing the desired average torque. The influences of the proposed stator design on the back-EMF, output torque and cogging torque are analysed and compared with the initial machine design.
机译:本文提出了一种减少分数槽式PM无刷电机转矩脉动的技术。配备各种定子设计的12槽/ 10极电机是研究的主题。当在定子部件上插入额外的永磁体时,需要在额定条件下具有更好的扭矩性能。为了获得最佳的扭矩性能,对电机拓扑进行了设计优化过程。结果表明,在不损失期望的平均转矩的情况下,转矩脉动显着降低。分析了所提出的定子设计对反电动势,输出转矩和齿槽转矩的影响,并与初始电机设计进行了比较。

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