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Influence of permanent magnet and width of stator slot to cogging torque reduction in PMSG using anti-notch and cutting edge method

机译:定子槽永磁体和宽度的影响使用抗凹口和切削边缘法对PMSG的齿轮扭矩减小

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Cogging torque and permanent magnet electric machines are difficult to separate. This torque always remains overdue to the interaction between the magnetic field caused by the permanent magnet against the stator slot. The method proposed for reducing cogging torque in this study is the Half cylinder anti-notch design and sequence with the cutting-edge design. It further considers the implement of changes the slot width of the stator and the change of distance between the permanent magnets. The models reproduced employing 2-D FEMM 4.2 version. It is noticed that the cogging torque will be considerably cut down if the width of the slot opening of the stator is equal to the anti-notch width. Decreasing the distance between the permanent magnets can further cut down the cogging torque and the cogging torque ripple is flatter than the reference model. Both models will reduce the surface space of the air gap. Moreover, the proposed models can be employed to reduce the cogging torque, causes the rotation of the rotor more effortlessly and can lessen the friction on PMSG.
机译:齿槽扭矩和永磁电机很难分开。这种扭矩始终仍然逾期,该磁场之间的磁场与定子槽引起的磁场之间的相互作用。所提出的用于减少本研究中的齿槽扭矩的方法是半缸防凹口设计和尖端设计的序列。它还考虑了改变定子的插槽宽度和永磁体之间的距离变化的工具。模型再现使用2-D FEMM 4.2版本。如果定子的槽开口的宽度等于抗凹口宽度,则注意到齿槽扭矩将显着减小。减小永磁体之间的距离可以进一步切断齿槽扭矩,并且齿槽扭矩脉动比参考模型更平坦。两种型号将减小气隙的表面空间。此外,可以采用所提出的模型来减少齿轮扭矩,使转子的旋转更加毫不费力,并且可以减少PMSG上的摩擦。

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