Optimal Design of Iron Core Loss for Ultra-high-speed Motor Based on Kriging Surrogate Model

Weifeng Zhang, Yan Yu, Keming Zhang, Ming Zhou
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Abstract

The increase in rotor temperature caused by eddy current loss significantly affects the performance of ultra-high-speed rotor. Therefore, the rotor eddy current loss must be comprehensively considered with the stator core loss during the optimal design process. The paper establishes a finite element model of ultra-high-speed motor core loss, uses the sensitivity analysis method based on Spearman rank correlation to systematically analyze the sensitivity of design parameters and reduce the number of design parameters, and establishes an optimization model based on rotor eddy current loss and stator core loss. The Latin square experimental design is adopted to obtain high-quality experimental samples, the Kriging surrogate model is established, and the genetic algorithm is applied to complete the optimal design. Finally, the optimization results are verified by finite element models. Results show that the stator core loss and rotor eddy current loss of the motor are greatly reduced.
基于Kriging代理模型的超高速电机铁芯损耗优化设计
涡流损耗引起的转子温度升高严重影响超高速转子的性能。因此,在优化设计过程中,必须综合考虑转子涡流损耗和定子铁心损耗。本文建立了超高速电机铁心损耗的有限元模型,采用基于Spearman秩相关的灵敏度分析方法,系统分析了设计参数的灵敏度,减少了设计参数的数量,建立了基于转子涡流损耗和定子铁心损耗的优化模型。采用拉丁方实验设计获得高质量的实验样本,建立Kriging代理模型,应用遗传算法完成优化设计。最后,通过有限元模型对优化结果进行了验证。结果表明,该方法大大降低了电机定子铁心损耗和转子涡流损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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