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Modeling of synchronous reluctance motors aided by permanent magnets with asymmetric rotor poles

机译:具有非对称转子杆的永磁体辅助同步磁阻电动机的建模

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The design of Synchronous Reluctance motors with asymmetric flux barriers has been recently used to reduce torque ripple. Finite element models are necessary tool to find the right place and dimensions of the flux barriers as well as to predict the torque harmonics. However, it is time consuming to analyze the model since periodicity and symmetry conditions cannot be used to reduce the model to a single pole. Therefore, in this paper an analytical model is presented to rapidly and accurately study the effect of such asymmetry of rotor poles on the torque ripple. The proposed approach is validated against a finite element model.
机译:最近用于减少扭矩波动的具有不对称通量屏障的同步磁阻电动机的设计。有限元模型是找到磁通屏障的正确位置和尺寸的必要工具,以及预测扭矩谐波。然而,分析模型是耗时的,因为周期性和对称条件不能用于将模型减少到单极。因此,在本文中,提出了一种分析模型,以快速,准确地研究这种转子磁极在扭矩波动上的效果。该提出的方法是针对有限元模型的验证。

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