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首页> 外文期刊>Electric Power Applications, IET >Design and optimisation of transverse flux machine with passive rotor and flux-concentrating structure
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Design and optimisation of transverse flux machine with passive rotor and flux-concentrating structure

机译:具有被动转子和集中结构的横向磁通机的设计与优化

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摘要

This paper proposes a transverse flux machine which has the topology of flux-concentrating and passive rotor, and also conducts a design and optimisation for machine. With working process of the machine introduced, its topology structure and composition are introduced. The optimisation objectives and design parameters are obtained with analysis. Furthermore, the performance equations are deduced to determine the parameters which affect performance. Ten free parameters should be optimised and the number of pole pair is first optimised with preliminary simulation. Subsequently, Taguchi method is applied to reduce the number of free parameters, and four parameters are selected to be further optimised. Three approximation models are created, and the Kriging model is better to predict the simulation results, thereby substitute the simulation to be used to algorithm. Accordingly, NSGA-II and MOPSO are used to acquire the optimal design for the machine, and the best solution of algorithm is determined by the simulation based on the results from the two algorithms. Finally, the prototype experiment is conducted to verify the optimisation method and simulation. The whole optimisation process for design and optimisation of electrical machine which is timesaving in comparison with optimisation with only simulation can provide the reference for electrical machine's design.
机译:本文提出了一种具有磁通集中和无源转子拓扑的横向磁通电机,并对其进行了设计和优化。介绍了机器的工作过程,介绍了其拓扑结构和组成。通过分析获得优化目标和设计参数。此外,推导性能方程式以确定影响性能的参数。应该优化十个自由参数,并首先通过初步仿真来优化极对数。随后,使用Taguchi方法减少自由参数的数量,并选择四个参数进行进一步优化。创建了三个近似模型,Kriging模型更好地预测了仿真结果,从而替代了用于算法的仿真。因此,使用NSGA-II和MOPSO来获得机器的最佳设计,并且基于这两种算法的结果,通过仿真确定算法的最佳解决方案。最后,通过样机实验验证了优化方法和仿真结果。与仅通过仿真进行优化相比,与设计优化相比,节省时间的电机设计和优化的整个过程可以为电机设计提供参考。

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