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Design of Three-Phase Flux-Reversal Machines With Fractional-Slot Windings

机译:分数槽绕组三相逆磁电机的设计

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This paper proposes several slot-pole combinations of flux-reversal machines (FRMs) with fractional-slot windings (FSWs) to achieve a larger torque density and a lower pulsating torque. First, the general rules for the determinations of the winding pole pair and slot per pole per phase (SPP) are introduced, and then the feasible slot–pole combinations of three-phase FRMs with FSWs are given. Second, the analytical expressions for the back electromotive force (EMF) and torque of fractional-slot FRMs are derived and expressed in terms of machine dimensions. Based on the analytical equations, the effects of rotor pole number, split ratio, slot opening ratio, permanent magnet (PM) thickness, and rotor pole arc on back EMF are investigated and analyzed, which gives a prediction for maximal achievable back EMF and power density of the FRM with FSWs. Third, the proposed 12-slot/14-pole FRM is compared to a conventional 12-slot/16-pole FRM in terms of cogging torque, flux linkage, back EMF, average torque, torque ripple, and efficiency. It is found that the cogging torque and torque ripple of the proposed FRM are 55% and 48% lower than that of the conventional one, respectively. Moreover, the rated torque of the former is also 4% higher than the latter. Finally, the analysis results are verified by the experiments on a 12-slot/14-pole FRM prototype with FSWs.
机译:本文提出了具有分数槽绕组(FSW)的磁通反转电机(FRM)的几种槽极组合,以实现更大的转矩密度和更低的脉动转矩。首先,介绍了确定绕组极对和每相每相槽数(SPP)的一般规则,然后给出了三相FRM与FSW的可行槽极组合。其次,推导了分数槽FRM的反电动势(EMF)和扭矩的解析表达式,并以机器尺寸表示。基于解析方程,研究并分析了转子磁极数,分流比,开槽比,永磁体(PM)厚度和转子磁极弧对反电动势的影响,从而为最大可实现的反电动势和功率做出了预测。 FSW与FSW的密度。第三,在齿槽转矩,磁链,反电动势,平均转矩,转矩脉动和效率方面,将提议的12槽/ 14极FRM与常规的12槽/ 16极FRM进行了比较。结果发现,所提出的FRM的齿槽转矩和转矩脉动分别比传统的齿槽转矩和齿纹转矩低55%和48%。此外,前者的额定扭矩也比后者高4%。最后,通过在带有FSW的12槽/ 14极FRM原型上进行的实验验证了分析结果。

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