Multi-Objective Topology Optimization of Synchronous Reluctance Machines Considering Design for Manufacturability Aspects

G. Bramerdorfer, E. Marth, S. Silber, J. Bárta, I. Lolová, Ladislav Knebl
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Abstract

This work is about optimizing synchronous reluctance machines considering a topology optimization (TO) based approach. This technique gives more design flexibility when comparing with finding ideal parameters for predefined geometries. A consistent implementation is presented that significantly reduces the overall computational effort compared to classical TO. In addition, attention is paid to obtaining designs ready for manufacturing. By contrast to the majority of previous work, the analysis encompasses multiple often conflicting objectives relevant for manufacturers and consequent customers, i.e., efficiency, maximum torque, torque ripple, and power factor. Based on the derived results, an individual tradeoff can be found and new insights into optimal designs for various applications can be gained.
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考虑可制造性设计的同步磁阻电机多目标拓扑优化
这项工作是关于考虑拓扑优化(TO)的方法来优化同步磁阻电机。与为预定义的几何形状寻找理想参数相比,这种技术提供了更多的设计灵活性。提出了一种一致性实现,与经典to相比,它显著减少了总体计算工作量。此外,还注意获得准备制造的设计。与之前的大部分工作相比,该分析包含了与制造商和后续客户相关的多个经常相互冲突的目标,即效率、最大扭矩、扭矩脉动和功率因数。基于导出的结果,可以找到一个单独的权衡,并可以获得针对各种应用的最佳设计的新见解。
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