首页> 外文期刊>IEEE Transactions on Energy Conversion >Reduction of Torque Ripple in Consequent-Pole Permanent Magnet Machines Using Staggered Rotor
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Reduction of Torque Ripple in Consequent-Pole Permanent Magnet Machines Using Staggered Rotor

机译:使用交错转子减少连续磁极永磁电机中的转矩脉动

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摘要

Consequent-pole permanent magnet (CPM) machines have considerable potential for low-cost applications because they can improve the permanent magnet (PM) utilization ratio. However, the phase back electromotive force (EMF) of CPM machines with N-s/(mt) = odd (t is the greatest common divisor of the stator slot number N-s and the rotor pole-pair number p, and m is the phase number) is asymmetric, i. e., the phase back EMF has even-order harmonics, which will increase torque ripples. This paper utilized the staggered rotor to eliminate the even-order harmonics and reduce the cogging torque of CPM machines, thereby potentially decreasing torque ripples considerably. The axial flux barrier in the middle of the rotor was used and optimized using three-dimensional finite element (FE) analysis to reduce the axial leakage flux of the CPM machine with the proposed staggered rotor. Furthermore, the axial magnetized PM was embedded in the flux barrier, which improved the flux density of the airgap above the iron-pole and, consequently, further increased the output torque. The electromagnetic performance of the proposed machine, including the open-circuit airgap flux density, back EMF, average torque, torque ripples, and PM utilization, was compared with that of the conventional CPM machine. Results showed that the proposedmachine obtained a similar torque and PMutilization ratio but a much lower torque ripple compared with the conventional one.
机译:连续极永磁体(CPM)机器在低成本应用中具有巨大潜力,因为它们可以提高永磁体(PM)的利用率。但是,Ns /(mt)=奇数的CPM电机的相反电动势(EMF)(t是定子槽数Ns和转子极对数p的最大公约数,m是相数)是不对称的例如,反相位电动势具有偶次谐波,这会增加转矩脉动。本文利用交错转子消除了偶次谐波并降低了CPM机器的齿槽转矩,从而潜在地大大降低了转矩脉动。使用转子中部的轴向通量屏障,并使用三维有限元(FE)分析对其进行优化,以减少所提出的交错转子的CPM电机的轴向泄漏通量。此外,轴向磁化的PM嵌入在磁通屏障中,这改善了铁极上方气隙的磁通密度,因此进一步增加了输出转矩。所提议的机器的电磁性能,包括开路气隙磁通密度,反电动势,平均转矩,转矩脉动和PM利用率,均与常规CPM机器进行了比较。结果表明,与传统的机器相比,该机器获得了相似的转矩和PM利用率,但转矩脉动要低得多。

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