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Various New Magnet Arrangements Used in Dual-Stator Permanent-Magnet Vernier Machine for Large Telescope Drive

机译:大型望远镜驱动用双定子永磁游标机中使用的各种新型磁铁装置

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Various new magnet arrangements used in dual-stator permanent-magnet vernier machine (DSPMVM) are proposed that develop dual-excitation conditions on both sides of the machine's airgaps (either stator-stator or stator-rotor) in order to increase the torque production by enhancing the airgap flux density in the inner and outer machine layers. The DSPMVM with sandwiched rotor combines features of the dual-stator and vernier structures. As a result, the proposed machine topologies are able to deliver high torque production by taking advantage of rich modulated harmonics. The topologies, operating principles, and the key design parameters of all the four DSPMVM configurations are presented. The electromagnetic performance of the proposed topologies including back electromotive force, airgap flux density, and torque characteristics are investigated and compared using 2D finite element analysis. The results show that the DSPMVM with flux-reversal magnets arrangement delivers high average torque with low cogging and ripple torque which are desired features for the telescope application.
机译:提出了在双定子永磁游标机(DSPMVM)中使用的各种新型磁体装置,它们会在机器气隙的两侧(定子-定子或定子-转子)产生双励磁条件,从而通过以下方式增加转矩产生:增强内部和外部机器层中的气隙通量密度。具有三明治式转子的DSPMVM结合了双定子和游标结构的功能。结果,所提出的机器拓扑结构能够通过利用丰富的调制谐波来提供高转矩产生。给出了所有四种DSPMVM配置的拓扑,工作原理和关键设计参数。使用2D有限元分析研究并比较了所提出拓扑的电磁性能,包括反电动势,气隙磁通密度和转矩特性。结果表明,带有磁通量反向磁体布置的DSPMVM提供了高平均扭矩,而齿槽效应和波纹扭矩却很低,这是望远镜应用所需要的功能。

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