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Finite element analysis of low-speed double disks type permanent magnet synchronous machine

机译:低速双盘式永磁同步机的有限元分析

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摘要

A low-speed double disks type permanent magnet synchronous machine is proposed. The electrical machine’s stator slot number is close to the rotor permanent magnet pole number and the stator’s tooth width is close to a pole distance. The coils that belong to each phase are concentrated and wound on consecutive teeth, so that the end winding is minimal and the phase windings do not overlap. It is conductive to stator cooling and reducing the moment of inertia by using the structure of double stators on two sides and single rotor in middle. Electrical machine’s stator is fixed on the end cover and the rotor magnetism pulling force on two sides can balance each other, so that the axial force has no effect on the bearing. The axis length of this machine is smaller than conventional machines, but motor’s power density is improved. A prototype had been analyzed and the calculated result proved that phase electromotive force (EMF) of three phase stator winding is better. The amplitude of harmonic torque and cogging torque are very low in this kind of machine, so stability is improved while the machine is running at a low-speed.
机译:提出了一种低速双磁盘型永磁同步机。电机的定子槽数靠近转子永磁杆数,定子的齿宽接近极距。属于每个相的线圈被浓缩并缠绕在连续齿上,使得端部绕组最小,相绕组不重叠。通过在中间的两侧和单个转子上使用双重定子的结构,它是导向定子冷却和减少惯性矩。电机的定子固定在端盖和转子磁两侧拉力可以彼此平衡,以使轴向力对轴承没有影响。本机的轴长度小于传统机器,但电动机的功率密度得到改善。已经分析了原型,并计算结果证明了三相定子绕组的相电动势(EMF)更好。在这种机器中,谐波扭矩和齿槽扭矩的幅度非常低,因此机器以低速运行时稳定性地提高。

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