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Back- emf infleunce in BDCM design for commutation torque riple reduction

机译:BDCM设计中的反电动势影响可减小换向转矩纹波

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In this paper, we study the effect of the back-emf waveform on the commutation torque ripple of a BDCM supplied with 120° mode controller. Various forms of back-emf are obtained through segmentation of the magnet into two pieces that have either V or U shape. The Torque and the torque ripple are determined from Indirect Circuit coupling approach, in Matlab-Simulink environment. Initially, the back-emf is determined by finite element method in 2D then is integrated into a model that accounts for the motor and its converter. After validation the model of study using an experimental kit based on an industrial motor with a magnet in one segment per pole, we have carried out the segmentation of the magnets while varying the angle of inter segment considering the magnet edges in U and V shape. Based on same approach, we determine the torque and its ripple for each new structure. An optimum design was found for the two shapes of segmentation. For the segmentation in the V shape, the minimum of torque ripple was found less than 6%, whereas in the U shape, the minimum was approximately less than 9%, in comparison to the 40% resulting from the original motor without magnet segmentation.
机译:在本文中,我们研究了反电动势波形对带有120°模式控制器的BDCM换向转矩脉动的影响。通过将磁体分割成V形或U形两个部分,可以获得各种形式的反电动势。转矩和转矩脉动是在Matlab-Simulink环境中通过间接电路耦合方法确定的。最初,反电动势是通过2D有限元方法确定的,然后集成到一个模型中,该模型考虑了电动机及其转换器。在使用基于工业电机的实验套件验证了研究模型后,该实验套件的磁体每极一个段,然后考虑U和V形状的磁体边缘,在改变段间角度的同时对磁体进行了分割。基于相同的方法,我们确定每个新结构的扭矩及其波动。发现了针对两种分割形状的最佳设计。对于V形分段,发现转矩脉动的最小值小于6%,而U形分段的最小值约为9%,与之相比,原始电动机没有磁体分段时,转矩脉动的最小值为9%。

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