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Dual stator two-phase permanent magnet machines with phase-group concentrated-coil windings for torque enhancement

机译:具有相群集中线圈绕组的双定子两相永磁电机,可提高扭矩

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摘要

Recently, the demand for developing high performance permanent magnet (PM) machines with high torque density and high efficiency are becoming more and more attractive due to the environmental and energy considerations. Notwithstanding the three-phase PM machines are most commonly employed in various industrial and domestic applications benefiting from their well-known high performance, two-phase PM machines are increasingly investigated resulting from their relatively low drive system cost and competitive performance in torque density compared with three-phase PM machines. Furthermore, concentrated windings offering short end-winding and low copper loss have gained more and more interests and been often applied in two-phase machines. However, the reported design for two-phase PM machines with conventional concentrated windings is non-effective to further significantly improve the torque performance. Therefore, in this paper, the novel dual stator two-phase PM machines are proposed for obtaining significant torque enhancement by utilizing phase-group concentrated-coil windings together with an unaligned arrangement of two stators as well as a spoke-type PM array. In order to highlight the advantages of the proposed two-phase PM machines, one three-phase PM machine and one two-phase PM machine with the conventional stator and winding configurations are adopted for comparison based on finite element method (FEM).
机译:近来,由于对环境和能量的考虑,对开发具有高扭矩密度和高效率的高性能永磁体(PM)机器的需求变得越来越有吸引力。尽管三相永磁电机受益于其众所周知的高性能,最常用于各种工业和家庭应用中,但由于其相对较低的驱动系统成本和与之相比的扭矩密度方面的竞争优势,越来越多地研究了三相永磁电机。三相永磁电机。此外,端绕组短,铜损低的集中绕组越来越引起人们的兴趣,并经常应用于两相电机中。然而,所报道的具有传统集中绕组的两相永磁电机的设计对于进一步显着改善转矩性能是无效的。因此,在本文中,提出了新颖的双定子两相永磁电机,其通过利用相群集中线圈绕组以及两个定子的未对准布置以及辐条型永磁电机阵列来获得显着的转矩增强。为了突出所提出的两相永磁电机的优点,基于有限元方法(FEM),采用一台具有常规定子和绕组结构的三相永磁电机和一台两相永磁电机进行比较。

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