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Tooth shape Optimization for Cogging Torque Reduction of Transverse Flux Rotary Motor using Design of Experiment and Response Surface Methodology

机译:使用实验和响应表面方法设计横向磁通旋转电机齿轮扭矩减小的齿形优化

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The aim of this paper is to present optimal design process and optimized model of Transverse Flux Rotary motor. Especially the stator and rotor tooth shapes are optimized to reduce cogging torque. Design of Experiment and Response Surface Methodology are used as an optimization method and all the experimental samples are gotten from 3-Dimensional Finite Element Analysis. After having a series of process, validity of this method is verified by comparing optimized model to initial model.
机译:本文的目的是呈现横向磁通旋转电机的最佳设计过程和优化模型。特别是定子和转子齿形被优化以减少齿槽扭矩。实验和响应表面方法的设计用作优化方法,并且所有实验样品都是从三维有限元分析中得到的。在具有一系列过程之后,通过将优化模型与初始模型进行比较来验证该方法的有效性。

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