首页> 外文会议>Biennial IEEE Conference on Electromagnetic Field Computation;CEFC2010 >Optimal design of brushless DC motor by utilizing novel coefficient modeling for skewed PM and overhang structure
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Optimal design of brushless DC motor by utilizing novel coefficient modeling for skewed PM and overhang structure

机译:利用新颖的系数模型对偏磁和悬垂结构的无刷直流电动机进行优化设计

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A novel coefficient modeling for skewed PM and overhang structure as a coefficient estimation method is introduced for optimal design in the 2D region for a PM motor. The novel model is constructed using 3D FEM and a response surface method (RSM) based on moving least square method (LSM). Then the novel model is coupled with an additional approximated model for optimal design in the 2D region. Finally, by combining the novel model and evolution algorithm (EA), an optimal design is performed. The usefulness of the proposed design is verified by 3D FEM simulation results.
机译:介绍了一种新颖的偏斜永磁体和悬垂结构系数建模方法,作为一种系数估计方法,用于永磁电机二维区域的优化设计。使用3D FEM和基于移动最小二乘法(LSM)的响应面方法(RSM)构建新模型。然后,将新颖模型与附加的近似模型耦合,以在2D区域中进行最佳设计。最后,通过结合新颖的模型和进化算法(EA),进行了优化设计。 3D FEM仿真结果验证了所提出设计的有效性。

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