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A novel spoke-type IPM machine with surface-mounted magnets to improve torque characteristics

机译:一种新型辐条型IPM机,具有表面安装磁体,可提高扭矩特性

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摘要

This paper proposes a novel rotor strategy for the spoke-type IPM machine (STIPMM) with four surface-mounted ferrite magnets to increase torque density and decrease torque ripple. An asymmetrical rotor structure concept is used during the design process to increase the efficiency of the two torque compositions of the STIPMM, the reluctance torque and the magnetic torque. In this design, the torque is improved by ensuring that the maximum value points of the magnetic torque and the reluctance torque are closer to each other. In order to excavate the greatest potentiality of the initial model, the Kriging method and genetic algorithm are used to obtain the optimized model. To verify the analysis result, the frozen permeability method (FPM) is employed to provide feasible insights into the separation of the torque components based on a 2-D finite element method (FEM). To highlight the superiority of the initial model, a conventional STIPMM with symmetrical rotor structure is adopted for comparison under the same magnet amounts, machine size and operating conditions.
机译:本文提出了一种具有四个表面安装的铁氧体磁体的辐条型IPM机(STIPMM)的新型转子策略,以提高扭矩密度和减小扭矩波动。在设计过程中使用不对称转子结构概念以提高STIPMM的两个扭矩组合物的效率,磁阻扭矩和磁性扭矩。在这种设计中,通过确保磁性扭矩的最大值点和磁阻扭矩彼此更靠近来改善扭矩。为了挖掘初始模型的最大潜力,使用Kriging方法和遗传算法来获得优化的模型。为了验证分析结果,采用冷冻渗透性方法(FPM)来提供基于2-D有限元方法(FEM)的扭矩分量分离的可行洞察。为了突出初始模型的优越性,采用具有对称转子结构的传统的STIPMM,以便在相同的磁体量,机器尺寸和操作条件下进行比较。

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