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A New Design Optimization Method for Permanent Magnet Synchronous Linear Motors

机译:永磁同步直线电机设计优化的新方法

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This study focused on the design optimization of permanent magnet synchronous linear motors (PMSLM) that are applied in microsecond laser cutting machines. A new design optimization method was introduced to enhance PMSLM performances in terms of motor thrust, thrust ripple, and inductive electromotive force (EMF). Based on accurate 3D finite element analysis (3D-FEA), a multiple support vector machine (multi-SVM) was proposed to build a non-parametric quick calculation model by mapping the relation between multivariate structure parameters and multivariate operation performances. The gravity center neighborhood algorithm (GCNA) was also applied to search the global optimal combination of the structure parameters by locating the gravity center of the multi-SVM model. The superiority and validity of this method are verified by experiments.
机译:这项研究集中于微秒激光切割机中应用的永磁同步线性电动机(PMSLM)的设计优化。引入了一种新的设计优化方法,以增强PMSLM在电机推力,推力波动和感应电动势(EMF)方面的性能。基于精确的3D有限元分析(3D-FEA),提出了一种多元支持向量机(multi-SVM),通过映射多元结构参数与多元运行性能之间的关系,建立了非参数快速计算模型。通过定位多SVM模型的重心,还应用重心邻域算法(GCNA)搜索结构参数的全局最优组合。实验证明了该方法的优越性和有效性。

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