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Impact of Geometry on the Rotor Iron Losses in Synchronous Reluctance Motors

机译:几何形状对同步磁阻电动机转子铁损的影响

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摘要

A parametric analysis is carried out to investigate the dependence of the rotor iron losses on the stator and rotor geometry of several synchronous reluctance machines. Six four-pole rotors have been designed with different flux barriers per pole through a multiobjective differential evolution algorithm coupled to a finite-element analysis (FEA). Two different stators with 24 and 36 slots are considered. During the optimizations, a rapid finite-element evaluation has been used to predict the performance of the motors. After that, an accurate time stepping FEA is used for computation of the rotor iron losses. Finally, the interaction between the rotor iron losses and several rotor and stator geometrical parameters is highlighted. The effect of the current time harmonics have also been taken into account, weighting its impact on the rotor losses.
机译:进行了参数分析,以研究转子铁损对几种同步磁阻电机的定子和转子几何形状的依赖性。通过与有限元分析(FEA)耦合的多目标差分进化算法,已设计出六个具有每个磁极势垒不同的四极转子。考虑了具有24和36个槽的两个不同的定子。在优化过程中,已使用快速的有限元评估来预测电动机的性能。此后,将使用精确的时间步长FEA来计算转子铁损。最后,突出了转子铁损与几个转子和定子几何参数之间的相互作用。还考虑了当前时间谐波的影响,权衡其对转子损耗的影响。

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