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Optimization of In-wheel PM Motor by Fuzzy-based Taguchi Method

机译:基于模糊的TAGUCHI方法的轮式PM电动机的优化

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In this paper, a novel systematic and efficient approach, using the-fuzzy-based Taguchi method with multiple performance characteristics index (MPCI), is employed for obtaining the robust design of an in-wheel permanent-magnet (PM) motor with both lower torque ripple factor and higher efficiency. According to the geometric parameters of the. PM motor, we select the controllable factors and their levels, such as the permanent magnet thickness in rotor, air-gap width, opening slot width and slot tooth width at stator. The proposed method first establishes the orthogonal array (OA) that is recommended by the Taguchi method. Then the multiple targets are coordinated by the fuzzy inference mechanism to obtain the better combination of the geometric parameters for achieving multiple quality targets. The finite element method (FEM) is used as the tool for analyzing the torque ripple and performance of PM motor. Results have shown that the proposed method can obtain the suitable motor's geometric parameters for reducing the cogging torque and enhancing the operating efficiency.
机译:本文使用具有多种性能特性指数(MPCI)的模糊的Taguchi方法,采用了一种新的系统和有效的方法,用于获得具有较低的轮内永磁体(PM)电机的鲁棒设计扭矩涟漪因子和更高的效率。根据几何参数。 PM电机,我们选择可控因子及其水平,例如转子,气隙宽度,打开槽宽度和定子槽齿宽的永磁体厚度。所提出的方法首先建立由TAGUCHI方法推荐的正交阵列(OA)。然后,通过模糊推理机制协调多个目标,以获得用于实现多个质量目标的几何参数的更好组合。有限元方法(FEM)用作分析扭矩脉动和PM电动机性能的工具。结果表明,该方法可以获得合适的电动机几何参数,用于减少齿槽扭矩并提高操作效率。

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