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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >An intelligent design optimization of a permanent magnet synchronous motor by artificial bee colony algorithm
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An intelligent design optimization of a permanent magnet synchronous motor by artificial bee colony algorithm

机译:基于人工蜂群算法的永磁同步电动机智能设计优化。

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摘要

The artificial bee colony algorithm is one of the latest stochastic methods based on swarm intelligence. The algorithm simulates the foraging behavior of honeybees. The structure of the algorithm is quite simple and its coding is very easy. This paper proposes a design optimization based on geometrical variables to obtain a highly efficient surface-mounted permanent magnet synchronous motor with concentrated winding by use of the artificial bee colony algorithm. Input parameters for the algorithm are the geometrical variables of the motor. This approach is more advantageous than finite element analysis requiring a long period of time. Results of the artificial bee colony algorithm are compared with results of a genetic algorithm and checked with a commercial design program. The results emphasize the effectiveness of the algorithm on the design optimization of the permanent magnet synchronous motor.
机译:人工蜂群算法是基于群体智能的最新随机方法之一。该算法模拟了蜜蜂的觅食行为。该算法的结构非常简单,其编码也非常容易。本文提出了一种基于几何变量的设计优化方法,利用人工蜂群算法获得了高效的集中绕组的表面安装永磁同步电动机。该算法的输入参数是电动机的几何变量。这种方法比需要较长时间的有限元分析更具优势。将人工蜂群算法的结果与遗传算法的结果进行比较,并使用商业设计程序进行检查。研究结果强调了该算法在永磁同步电动机设计优化中的有效性。

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