轮式装甲车用350kw级双三相IPMSM序贯设计过程

IF 7.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Ji-Chang Son;Min-Su Kwon;Dong-Kuk Lim
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引用次数: 0

摘要

牵引电机的优化设计是一个复杂的过程,需要满足各种要求和约束。此外,需要考虑各种物理方面,如应力和热,以确保电机的稳定性,包括机械刚度和绝缘击穿。本文提出了一种由概念设计、详细设计和优化设计组成的新型串行设计流程,对内置式永磁同步电机进行了优化设计。概念设计使多个案例研究能够快速执行,因为使用了静态电磁分析。在详细设计阶段通过电磁分析确定了整体几何参数,并推导出满足要求的初始模型。最后,在优化设计阶段,利用机器学习方法快速推导出最优模型,并通过多物理场分析检验模型的稳定性。为验证该方法对实际电机的适用性,对轮式装甲车用350 kw级双三相IPMSM进行了优化设计,并通过样机的实验结果验证了该方法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sequential Design Process of a 350-kW Class Dual Three-Phase IPMSM for a Wheeled Armored Vehicle
Optimal design of a traction motor is a complex process, as various requirements and constraints need to be satisfied. In addition, consideration of various physical aspects, such as stress and heat, is necessary to ensure the stability of the motor, including mechanical rigidity and insulation breakdown. In this article, to derive the optimal design of an interior permanent magnet synchronous motor (IPMSM), a novel sequential design process consisting of conceptual design, detailed design, and optimal design is proposed. The conceptual design enables the rapid execution of multiple case studies, as static electromagnetic analysis is used. The overall geometric parameters are determined through electromagnetic analysis in the detailed design stage and an initial model that satisfies the requirements is derived. Finally, in the optimal design stage, the optimal model is quickly derived using a machine learning method, and the stability of the model is examined through multiphysics analysis. To validate the applicability to the practical motor, design optimization for a 350-kW class dual three-phase IPMSM for a wheeled armored vehicle is conducted, and the feasibility of the proposed method is verified based on the experimental results of the manufactured prototype.
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CiteScore
13.50
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