铁氧体磁体双定子磁通开关电机的拓扑结构

F. Asadi, S. E. Abdollahi, S. Gholamian, S. Mirnikjoo
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引用次数: 1

摘要

磁链开关电机因其高转矩密度和转子结构简单而受到广泛关注。在这些机器中,电枢线圈和励磁系统都安装在定子结构上,转子缺乏任何线圈,永磁体(pm)或保持架。磁振仪的缺点之一是定子结构中使用了大量昂贵的稀土磁铁(REM)。为了解决这一问题,铁氧体永磁由于其低廉的价格可以被替代。然而,它们的能量积很低,建议降低机器的扭矩密度。考虑采用双定子结构来解决这一问题。在此机器中,与传统的FS机器一样,转子极数对机器性能有显著影响。因此,本文研究了转子拓扑结构对铁氧体双定子磁通开关永磁(DSFSPM)电机性能的影响。为此,设计了具有多个转子极数的DSFSPM,并采用有限元法对其产生的反电动势波形和发展的电磁转矩进行了仿真分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Topologies of a Double Stator Flux Switching Motor with Ferrite Magnets
Flux Switching (FS) machines have recently received much attention because of their high torque density and their simple rotor structure. In these machines, the armature coil and excitation system are both mounted on the stator structure, and the rotor lacks any coils, Permanent Magnets (PMs) or cages. One of the drawbacks of the FS machines is employment of large quantity expensive Rare Earth Magnets (REM) in their stator structure. In order to tackle this problem, ferrite PMs can be replaced due to their low price. However, their energy-product is low proposed machine torque density is reduced. Double stator structure is considered to solve this problem. In this machine, as in the conventional FS machines, the rotor pole number has a significant effect on machine performance. Therefore, in this paper, the effect of rotor topologies on the performance of a ferrite-based Double-Stator Flux Switching Permanent Magnet (DSFSPM) machine is investigated. In this regard a DSFSPM is designed with several rotor pole numbers and their generated back-EMF waveform and developed electromagnetic torque are simulated and analyzed by Finite Element Method (FEM).
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