Impact of Topology Optimization Problem Setup on Switched Reluctance Machine Design

Aino Manninen, Janne Keränen, J. Pippuri-Mäkeläinen, Tuomas Riipinen, S. Metsä-Kortelainen, T. Lindroos
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引用次数: 4

Abstract

We study the topology optimization (TO) of an 8/6 switched reluctance motor rotor in terms of torque and mass. Together with additive manufacturing, topology optimization offers disruptive possibilities in electrical machine design. We investigate how sensitive the TO is to the problem setup by varying mesh density, material definitions and initial values of optimization. We also derive and implement three different optimization problem formulations to improve the electrical machine performance. As a result, we found that the geometry obtained with this method is sensitive to both material definition and mesh density. Further, the rotor mass could not be decreased significantly without compromising the average torque to some extent. However, through optimization, significant improvement of the torque values was gained for the rotor angles at the beginning or at the end of the stroke.
拓扑优化问题设置对开关磁阻电机设计的影响
从转矩和质量两个方面研究了8/6开关磁阻电机转子的拓扑优化。与增材制造一起,拓扑优化为电机设计提供了颠覆性的可能性。我们通过改变网格密度、材料定义和优化的初始值来研究TO对问题设置的敏感性。我们还推导并实现了三种不同的优化问题公式,以提高电机性能。结果,我们发现用这种方法获得的几何形状对材料定义和网格密度都很敏感。此外,在一定程度上不影响平均转矩的情况下,转子质量不可能显著降低。然而,通过优化,在行程开始或结束时转子角度的转矩值得到了显着改善。
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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