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Reduction of cogging torque on brushless direct current motor with segmentation of magnet permanent

机译:用磁铁分割的无刷直流电动机上的齿槽直流电动机的减少

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Cogging torque is an attractive case. This is because this torque is consistently under consideration on machines that deal with permanent magnets to generate electromotive force (emf) as its basic excitation. The cogging torque is parasitic, it will block the primary rotation of the rotor, give rise to noise, and vibration thereby diminishing the lifetime of the machine. Reducing cogging torque is transformed into a necessary matter to carry out. In this paper, the reduction of cogging torque is accomplished by segmentation method on permanent magnet of the rotor. Permanent magnets remain split up into two with a particular distance variety to accomplish the design with optimal cogging torque reduction. It furthermore took into consideration the effect of segmentation on magnetic stored energy and induction voltage of the Brushless Direct Current (BLDC) motor. The conclusions brought out with this method, the cogging torque decreased by 90.84%, smaller magnetic stored energy. While the induced voltage will be less if the distance between the segments becoming larger.
机译:齿槽扭矩是一个有吸引力的情况。这是因为这种扭矩在处理永磁体的机器上始终如一,以产生电动势(EMF)作为其基本励磁。齿槽扭矩是寄生的,它将阻挡转子的主要旋转,产生噪音,从而降低机器的寿命。减少齿槽扭矩变为必要的问题。在本文中,通过在转子的永磁体上的分段方法完成了齿槽扭矩的减小。永磁体仍然用特定距离变化分成两个,以实现具有最佳齿槽扭矩的设计。此外考虑了分割对无刷直流(BLDC)电机的磁存储能量和感应电压的影响。结论采用这种方法,齿槽扭矩降低了90.84 %,磁力储能较小。虽然如果段之间的距离变大,则感应电压将较少。

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