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Optimization of a transverse flux machine with claw-pole and flux-concentrating structure

机译:爪形磁极集中式横向磁通机的优化

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This paper deals with the multi-objective optimization of a transverse flux machine with claw-pole and flux-concentrating structure (CPTFM), which is especially suitable for low-speed and high-torque applications due to its high pole pair number. Compared with conventional radial flux machine, the main flux path in CPTFM is three dimensional and transverse to the rotation of the rotor. For this reason, the time-consuming 3D finite element method is necessary to accurately investigate the performance of CPTFM. In order to optimize the electrometric design of CPTFM and meanwhile to limit the calculation time to an acceptable level, a method mainly based on the Taguchi method and the Nondominated Sorting Genetic Algorithm 2 is developed in this paper. From the comparison between the final optimized design and the original design, it is concluded that all the specified five objectives are improved and the developed method is feasible and effective, which makes a appropriate compromise between the calculation time and optimization results.
机译:本文针对具有爪极和磁通集中结构(CPTFM)的横向磁通机的多目标优化进行了研究,由于其磁极对数高,它特别适合于低速和高转矩应用。与传统的径向磁通机相比,CPTFM中的主要磁通路径是三维的,并且垂直于转子的旋转。因此,必须使用费时的3D有限元方法来精确研究CPTFM的性能。为了优化CPTFM的电学设计,同时将计算时间限制在可接受的水平,本文提出了一种主要基于Taguchi方法和非支配排序遗传算法2的方法。通过对最终优化设计和原始设计的比较,可以得出结论,所有指定的五个目标均得到了改进,所开发的方法是可行和有效的,从而在计算时间和优化结果之间做出了适当的折衷。

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