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首页> 外文期刊>Electric Power Applications, IET >Analytical method to compute bridge stresses in V-shape IPMs
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Analytical method to compute bridge stresses in V-shape IPMs

机译:V形IPM中桥梁应力的解析计算方法

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摘要

V-shape interior permanent-magnet machines (IPMs) have been widely utilised in the industry due to their high-power density, high efficiency, and low manufacturing cost. There has been growing interest in applying multi-objective optimisation to the design of electric machines. In the context of V-shape IPM designs, it is important to include stress analysis in the optimisation design analysis as the steel bridges in the IPM rotor are structural weak points, where high stresses develop. However, traditional finite element analysis (FEA) that is normally used to compute bridge stresses becomes cumbersome due to its high computational cost. In this study, a computationally efficient analytical method is proposed to compute the mechanical stresses developed within the steel bridges in a V-shape IPM. The proposed method is shown to yield accurate predictions compared with FEA while reducing computational cost. A design study is conducted that demonstrates that the machine performance can be improved by incorporating the proposed structural analysis in a multi-objective optimisation-based-design environment.
机译:V型内部永磁体(IPM)由于其高功率密度,高效率和低制造成本而已在工业中得到广泛使用。将多目标优化应用于电机设计的兴趣日益浓厚。在V形IPM设计的背景下,将应力分析包括在优化设计分析中非常重要,因为IPM转子中的钢桥是结构薄弱点,容易产生高应力。然而,由于计算成本高,通常用于计算桥梁应力的传统有限元分析变得繁琐。在这项研究中,提出了一种计算有效的分析方法来计算V型IPM中钢桥内部产生的机械应力。与有限元分析相比,所提出的方法显示出准确的预测结果,同时降低了计算成本。进行的一项设计研究表明,通过在多目标基于优化的设计环境中结合建议的结构分析,可以提高机器性能。

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