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Electromagnetic Performance due to Tooth-tip Design in Fractional-slot PM Brushless Machines

机译:分数槽式PM无刷电机的齿尖设计带来的电磁性能

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摘要

Permanent Magnet (PM) machines are favorable as an alternative to other machine topologies due to simpler construction and high torque density. However, it may result hight torque ripple due to an influence of cogging torque and electronic commutation. In this paper, comparisons of phase back-emf, static torque and cogging torque due to influence of tooth-tip asymmetry in 12-slot/10-pole double-layer and 12-slot/10-pole single layer winding machines are carried out using 2D Finite-Element Analysis. At rated condition, the stator asymmetry has great influence on the torque performance as there is significant reduction of torque ripple in 12-slot/10-pole mahine equipped with single layer winding than one equipped with double layer winding machine. It si confirmed that an optimum torque performance is desirable via stator iron modification in PM machines.
机译:永磁(PM)电机由于结构简单和高扭矩密度而成为其他电机拓扑的替代选择。但是,由于齿槽转矩和电子换向的影响,可能导致较高的转矩脉动。本文对12槽/ 10极双层和12槽/ 10极单层绕线机中由于齿尖不对称的影响而产生的反电动势,静态转矩和齿槽转矩进行了比较。使用2D有限元分析。在额定条件下,定子的不对称性对转矩性能有很大的影响,因为配备单层绕组的12槽/ 10极机器的转矩脉动比装有双层绕组机的机器明显降低。可以肯定的是,通过永磁电机中定子铁的改进,可获得最佳的扭矩性能。

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