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Synthesis and CAD of permanent magnet DC Brushless motors

机译:永磁直流无刷电动机的合成与CAD

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The paper presents an algorithm and software for the optimal design of permanent magnet Brushless DC motors. Such motors are powered by DC voltage sources via semiconductor switches connected to the motor phase belts. The software is adjusted to the design of motors with NdFeB high energy density magnets. An attention has been given to issues important in the design of the motors, i.e., permanent magnet selection, structure of magnetic circuit, and armature windings. Particularly, precision of calculation of the permanent magnet operating point, visualization of selection process of the winding belts, and magnetic circuit dimensioning have been investigated. The authors have been trying to make the equations more specific and accurate than those presented in the literature. The user software interface allows changes in the magnetic circuit dimensions, and in the winding parameters. It is possible to examine simultaneously the influence of these changes on the calculation results. The software operates both with standard and inverted (outer rotor) motor structure. To perform optimization, a non-deterministic method based on the evolution strategy (μ + λ) - ES has been used.
机译:本文提出了一种用于永磁无刷直流电动机优化设计的算法和软件。此类电动机由直流电压源通过连接到电动机相带的半导体开关供电。该软件根据NdFeB高能量密度磁体的电动机设计进行了调整。已经关注了在电动机设计中重要的问题,即永磁体的选择,磁路的结构和电枢绕组。特别地,已经研究了永磁体工作点的计算精度,卷绕带的选择过程的可视化以及磁路尺寸的确定。作者一直在尝试使这些方程比文献中给出的方程更加具体和准确。用户软件界面允许更改磁路尺寸和绕组参数。可以同时检查这些变化对计算结果的影响。该软件可在标准和反向(外转子)电动机结构上运行。为了执行优化,已使用基于进化策略(μ+λ)-ES的非确定性方法。

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