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Analysis on cogging torque of driving in-wheel motor for electric vehicle

机译:电动汽车轮毂电机齿槽转矩分析

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In order to reduce the torque fluctuation, vibration and acoustic noise of driving in-wheel motor for electric vehicle, this paper researches the generation mechanism and influence factors of cogging torque. Based on energy method and Fourier expansion, an analytical method is proposed to establish the expression of cogging torque, which can express its relation with design parameters. Based on the expression, the match of pole and slot, pole arc coefficient and permanent magnet eccentric distance are analysed and studied. Ansoft software is used to establish a time-varying movement electromagnetic field finite element model, which can compute the cogging torque about the different match of the pole and slot, different pole arc coefficient and different permanent magnet eccentric distance, in order to obtain the change regularity of the corresponding cogging torque. The conformity of the final simulation computation results with the theoretical analysis indicates this method can be used to provide a theoretical basis to make further optimal design of the new driving in-wheel motor and its control system, so as to reduce torque ripple of in-wheel motor.
机译:为了减少电动汽车驱动轮毂电机的转矩波动,振动和噪声,研究齿槽转矩的产生机理及影响因素。基于能量法和傅立叶展开法,提出了一种解析方法来建立齿槽转矩的表达式,可以表达其与设计参数的关系。在此基础上,对极槽的匹配,极弧系数和永磁体偏心距进行了分析研究。使用Ansoft软件建立时变运动电磁场有限元模型,可以计算出关于磁极和槽缝的不同匹配,不同的磁极电弧系数和不同的永磁体偏心距的齿槽转矩,以获得变化。相应的齿槽转矩的规律性。最终仿真计算结果与理论分析的吻合表明,该方法可为进一步研究新型轮毂驱动电机及其控制系统的优化设计提供理论依据,从而减小轮毂电机的转矩脉动。轮毂电机。

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