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Cogging Torque and Operation Torque Ripple Reduction of Interior Permanent Magnet Synchronous Machines by Using Asymmetric Flux-Barriers

机译:通过使用不对称的磁通屏幕齿轮齿轮扭矩和操作扭矩脉动降低内部永磁同步机

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This paper presents three configurations of flux-barriers in a V-shaped interior permanent magnet synchronous machine (PMSM) to reduce cogging torque and operation torque ripple. While maintaining the average electromagnetic torque, torque performances in dual rotation directions are analyzed with finite element method (FEM), showing that one of the configurations can achieve good performance in dual rotation directions while the other two are suitable for one rotation direction only. Furthermore, frozen permeability method (FPM) is employed to compare the influence on PM torque and reluctance torque, and comes to a conclusion that two configurations have little impact on the reluctance torque while the other can enhance the reluctance torque slightly.
机译:本文介绍了V形内部永磁同步机(PMSM)中的磁通屏障的三种配置,以减少齿槽扭矩和操作扭矩波动。在保持平均电磁扭矩的同时,用有限元方法(FEM)分析双旋转方向上的扭矩性能,示出了其中一个配置可以在双旋转方向上实现良好的性能,而另一个则仅适用于一个旋转方向。此外,采用冷冻渗透性方法(FPM)来比较对PM扭矩和磁阻扭矩的影响,并且得出结论,两种配置对磁阻扭矩几乎没有影响,而另一个配置可以略微增强磁阻扭矩。

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