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Performance Evaluation of Flwx-Switching Permanent Magnet with Modifications to Stator and Rotor

机译:Flwx开关永磁体定转子改进后的性能评估

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A flux-switching motor is a synchronous electric motor in which both field and armature coils are placed on the stator. There are thus three different stator structure types with regard to field excitation: permanent magnet, direct current field excitation, and hybrid. The rotor structure of the motor in this study reflected two types: integrated and multi-piece structure. The permanent magnet flux switching motor with integrated rotor structure offers more advantages and more attention has been paid to this as compared to other electric motors in various industries. The major advantages of this type are high torque density, ease of manufacture, high reliability, and robustness of rotor. However, these flux switching motors have relatively high cogging torque, and while work has been done on reducing the cogging torque and some literature published, most such works have focused on modifying the rotor tooth, skewing the rotor. These works study the effect of rotor shaping on motor performance, while in this paper, new rotor shapes are also considered. Finally, a method is introduced to minimise the cogging torque that has least adverse effect on other effective parameters such as torque density. Using the results of other papers, the finite element method is used to find the best method of rotor shaping in this paper.
机译:磁通切换电机是一种同步电机,其中磁场线圈和电枢线圈都位于定子上。因此,关于励磁,有三种不同的定子结构类型:永磁、直流励磁和混合励磁。本研究中电机的转子结构反映了两种类型:整体式和多片式结构。与其他电机相比,集成转子结构的永磁磁通切换电机具有更多的优点,越来越受到各行业的重视。这种类型的主要优点是高转矩密度、易于制造、高可靠性和转子的坚固性。然而,这些磁通切换电机具有相对较高的齿槽转矩,虽然已经完成了降低齿槽转矩的工作,并且发表了一些文献,但大多数此类工作都集中在修改转子齿,使转子倾斜。这些工作研究了转子形状对电机性能的影响,同时本文还考虑了新的转子形状。最后,介绍了一种最小化齿槽转矩的方法,该方法对转矩密度等其他有效参数的不利影响最小。本文结合其他文献的研究结果,利用有限元方法寻找转子成形的最佳方法。

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