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Low Torque Ripple Rotor Design of the Interior Permanent Magnet Motor Using the Multi-Phase Level-Set and Phase-Field Concept

机译:基于多相水平集和相场概念的内部永磁电动机低转矩脉动转子设计

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摘要

This paper proposes a new optimization method to design the rotor of interior permanent magnet (IPM) motor which consists of a permanent magnet (PM) and ferromagnetic material (FM) for reducing the torque ripple. To express three different material properties (PM, FM, and air), a multi-phase level-set model representing two level-set functions is introduced and the concept of a phase-field model is incorporated to distribute level-set functions for controlling the complexity of the structural boundaries. The optimization problem is formulated to minimize the torque ripple under the volume constraints of each material. Two level-set functions are updated with their respective design sensitivities. To verify the usefulness of the proposed method, the rotor design example of the IPM motor is performed and a novel configuration is obtained.
机译:本文提出了一种新的优化方法,用于设计内部永磁(IPM)电动机的转子,该电动机由永磁体(PM)和铁磁材料(FM)组成,以减小转矩脉动。为了表示三种不同的材料特性(PM,FM和空气),引入了表示两个水平集功能的多相水平集模型,并引入了相场模型的概念来分配用于控制的水平集功能结构边界的复杂性。提出了优化问题,以在每种材料的体积约束下最小化转矩波动。两个级别设置功能已根据其各自的设计敏感性进行了更新。为了验证所提出方法的有效性,执行了IPM电机的转子设计示例,并获得了新颖的配置。

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