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Design and Analysis of a Magnetic-Field Modulated Brushless Double-Rotor Machine—Part II: Winding Configuration

机译:磁场调制无刷双转子电机的设计和分析-第二部分:绕组配置

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摘要

The analysis of Part I shows that the integer-slot winding of the magnetic-field modulated brushless double-rotor machine (MFM-BDRM) can obtain very sinusoidal no-load and load back electromotive force (EMF) and quite small torque ripple under an optimal pole-pair combination of stator, permanent magnet (PM) rotor, and magnetic blocks. In practical applications, however, the integer-slot winding is usually replaced by the fractional-slot concentrated winding (FSCW), which can reduce end windings and easily realize automatic winding. This paper focuses on the influence of the FSCW on the electromagnetic performance of the MFM-BDRM and the application feasibility of the FSCW in the MFM-BDRM. First, the formation mechanism of the harmonic back EMF of FSCW is investigated. Then the pole-pair combination law of stator, PM rotor, and magnetic block for the FSCW of the MFM-BDRM is further investigated. Second, the specific FSCW of the MFM-BDRM with$Q = 2{p_s} pm 1$and$Q = 2{p_s} pm 2$and the integer-slot MFM-BDRM are comparatively investigated. It shows that the integer-slot winding of the MFM-BDRM is superior to the FSCW of the MFM-BDRM in no-load and load back EMF, torque ripple, maximum torque outputting capability, and power factor. Finally, the optimal winding configuration of the MFM-BDRM is determined. A prototype of the MFM-BDRM with the optimal winding configuration and pole-pair combination is designed and manufactured. The theoretical and finite-element analysis is verified by experiments.
机译:第一部分的分析表明,磁场调制无刷双转子电机(MFM-BDRM)的整数槽绕组可以在非常高的转速下获得非常正弦的空载和反电动势(EMF),并且转矩脉动非常小。定子,永磁体(PM)转子和磁性块的最佳极对组合。然而,在实际应用中,通常用分数槽集中绕组(FSCW)代替整数槽绕组,这样可以减少端部绕组并轻松实现自动绕组。本文着重研究了FSCW对MFM-BDRM电磁性能的影响以及FSCW在MFM-BDRM中的应用可行性。首先,研究了FSCW谐波反电动势的形成机理。然后进一步研究了MFM-BDRM的FSCW的定子,永磁转子和磁块的极对组合定律。第二,MFM-BDRM的特定FSCW带有 n $ Q = 2 {p_s} pm 1 $ nand n $ Q = 2 {p_s} pm 2 $ n,并比较研究了整数槽MFM-BDRM。结果表明,MFM-BDRM的整数槽绕组在空载和反载EMF,转矩脉动,最大转矩输出能力和功率因数方面优于MFM-BDRM的FSCW。最后,确定MFM-BDRM的最佳绕组配置。设计并制造了具有最佳绕组配置和极对组合的MFM-BDRM原型。通过实验验证了理论和有限元分析。

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