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首页> 外文期刊>International Journal of Automotive Technology >Shape design optimization of interior permanent magnet motor for vibration mitigation using level set method
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Shape design optimization of interior permanent magnet motor for vibration mitigation using level set method

机译:使用水平集方法优化减振用内部永磁电动机的形状设计

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摘要

This paper presents a new optimization method to obtain the structural design of permanent magnet motor which can reduce the mechanical vibration. The optimization problem is formulated to minimize a multi-objective function including the mean compliance of the whole stator for maximizing the stiffness under the magnetic force and the torque ripple by aligning torque profiles to a constant target value for maximizing the magnetic performance, with constraint for material usage. The level set function is introduced for representing the structural boundaries and calculating the material properties. A coupled magneto-mechanical analysis is performed to verify the vibration characteristic of the motor system and obtain the design sensitivities. To confirm the usefulness of the proposed design method and to obtain the optimum structural design for low vibration motor, a design example of 20 kW interior permanent magnet motor developed for the power train of a hybrid electric vehicle is provided.
机译:本文提出了一种新的优化方法,以获得能够减小机械振动的永磁电动机的结构设计。制定了优化问题,以使多目标函数最小化,其中包括整个定子的平均顺应性,以通过将转矩曲线与恒定目标值对齐以最大化磁性能来最大化磁力和转矩脉动下的刚度,并限制了材料用量。引入了水平设置功能来表示结构边界并计算材料属性。进行了磁-机械耦合分析,以验证电动机系统的振动特性并获得设计灵敏度。为了确认所提出的设计方法的有效性并获得低振动电动机的最佳结构设计,提供了为混合动力电动汽车的动力总成开发的20 kW内部永磁电动机的设计示例。

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