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Comparison of variable flux reluctance, switched flux and fractional slot PM12-stator slots machines having 10- and 14-rotor poles

机译:可变磁通磁阻,开关通量和分数槽PM12-定子槽机的比较,具有10杆和14转子磁极

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In this paper, the electromagnetic performance of variable flux reluctance machines (VFRMs), switched flux permanent magnet machines (SFPMMs), and fractional slot permanent magnet machines (FSPMMs) are investigated and compared together with the interior permanent magnet machine (IPM) used in Toyota/Prius-2010. All the machines having the stator/rotor pole combinations of 12/10 and 12/14 are optimized by the global optimization with genetic algorithm (GA) under the restriction of same outer diameter, stack length and air-gap, which are the same as those of Prius-IPM machine. It shows that the torque densities of SFPMMs and FSPMMs are similar and higher than the non-PM VFRMs. However, in terms of robust and cost, the VFRMs can exhibit better performance over the other PM machines.
机译:在本文中,研究了可变磁通磁阻机(VFRMS),开关通量永磁机(SFPMMS)和分数槽永久磁铁机(FSPMMS)的电磁性能,并与内部永磁机(IPM)一起进行了比较 丰田/普锐斯-2010。 具有12/10和12/14的定子/转子杆组合的所有机器通过遗传算法(GA)在相同的外径,堆叠长度和空气间隙的限制下进行了优化,与其相同 Prius-IPM机器的机器。 它表明,SFPMMS和FSPMM的扭矩密度相似且高于非PM VFRMS。 然而,就稳健和成本而言,VFRMS可以对其他PM机器表现出更好的性能。

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