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Influence of slot-pole configuration on reluctance torque in fractional- slot concentrated-winding interior permanent-magnet machines

机译:槽极配置对分数槽浓缩绕组内部永磁机磁阻扭矩的影响

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摘要

Due to their advantages of high efficiency, high power density, short end turns and high slot fill factor, the fractionalslot concentrated-winding interior permanent-magnet (FSCW-IPM) machines have been gaining interest over the last few years. This paper investigates the reluctance torque of FSCW-IPM machines with different slot-pole (S/P) configurations. Firstly, the calculations of the inductances of d-axis and q-axis are analyzed and derived, showing that the reluctance torque of the FSCW-IPM machines is closely related to the S/P configuration. Then, the reluctance torque of eight FSCW-IPM machines is comparatively investigated by using the finite-element analysis. For a fair comparison, these machines are designed based on the same size. Their electromagnetic performances, such as speed range, field-weakening capacity, are analyzed and compared. Finally, the results reveal that low pole-number and high slot-number FSCW-IPM machines have the potential to offer high reluctance torque and good field-weakening capacity.
机译:由于其优点效率高,高功率密度,短端转弯和高槽填充因子,Fractionallot浓缩绕组内部永磁(FSCW-IPM)机器在过去几年中一直受到兴趣。本文研究了具有不同插槽杆(S / P)配置的FSCW-IPM机器的磁阻扭矩。首先,分析和导出D轴和Q轴的电感的计算,显示FSCW-IPM机器的磁阻扭矩与S / P配置密切相关。然后,通过使用有限元分析来相对研究八种FSCW-IPM机器的磁阻扭矩。对于公平的比较,这些机器根据相同的尺寸设计。分析并比较它们的电磁性能,例如速度范围,弱化容量。最后,结果表明,低极数和高槽数FSCW-IPM机器具有提供高磁阻扭矩和良好的弱化容量。

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