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首页> 外文期刊>IEEE Transactions on Energy Conversion >Rotor Shape Multi-Level Design Optimization for Double-Stator Permanent Magnet Synchronous Motors
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Rotor Shape Multi-Level Design Optimization for Double-Stator Permanent Magnet Synchronous Motors

机译:双定子永磁同步电动机转子形状多级设计优化

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摘要

This paper presents a rotor shape multi-level-objective optimization designed to reduce the mechanical stress distribution in the rotor core of a double-stator permanent magnet synchronous motor. The second objective is weight minimization performed via a response surface methodology with a uniform precision central composite design function. The optimal operation point, with a substantial population size, is reached using a Monte Carlo algorithm on the fitted model. The goodness-of-fit for the model is evaluated based on the modified Akaike information criterion and the Bayesian information criterion with a linear regression approach. To achieve these goals, a multi-level design procedure is proposed for the first time in machine design engineering. All the electromagnetic forces of the machine, such as normal, tangential, and centrifugal forces, are calculated using three-dimensional transient finite element analysis. The outcome of the proposed rotor core optimization shows that the finalized shape of the studied core has significantly smaller weight and mechanical stress, while the electromagnetic performance of the machine has remained consistent with a pre-optimized machine.
机译:本文提出了一种转子形状多级目标优化设计,旨在减少双定子永磁同步电动机转子铁心中的机械应力分布。第二个目标是通过具有统一精度的中央复合设计功能的响应面方法进行重量最小化。使用拟合模型上的蒙特卡洛算法,可以得出具有大量人口的最佳操作点。基于修正的Akaike信息标准和贝叶斯信息标准,使用线性回归方法评估模型的拟合优度。为了实现这些目标,在机械设计工程中首次提出了多级设计程序。使用三维瞬态有限元分析计算出机器的所有电磁力,例如法向,切向和离心力。所提出的转子铁心优化的结果表明,所研究铁芯的最终形状具有明显较小的重量和机械应力,而电机的电磁性能与预优化的电机保持一致。

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