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A bi-harmonic five-phase SPM machine with low ripple torque for marine propulsion

机译:具有低脉动转矩的双谐波五相SPM电机,用于船舶推进

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This paper addresses the design of a bi-harmonic five-phase Surface-mounted Permanent Magnet (SPM) machine for marine propulsion. The bi-harmonic characteristic results from the particular 20 slots-8 poles configuration that makes possible high value of third harmonic current injection. Thus the machine performance can be improved in terms of average torque, speed range, losses control and torque quality, this last feature being the scope of the paper. As low ripple torques are wanted at low speed, the magnet layer is defined to reduce the cogging torque and to make third harmonic current injection increasing average torque and reducing pulsating torque in the same time. According to a selection procedure based on the numerical simulations of a high number of machines, it appears that designing the rotor with two identical radially magnetized magnet that cover two-third the pole arc allows to reach this goal. Referring to an equivalent three-phase machine, the torque ripple level of the bi-harmonic five-phase machine is more than three times lower, thus being obtained with a simple control strategy that aims at achieving constant currents in the rotating frames. The time simulations of the drive confirm the significant reduction of the speed oscillation, especially at low speed.
机译:本文介绍了一种用于船舶推进的双谐波五相表面安装式永磁(SPM)电机的设计。双谐波特性来自特定的20槽8极配置,这使得高次谐波电流注入成为可能。因此,可以在平均扭矩,速度范围,损失控制和扭矩质量方面改善机器性能,这最后的特征是本文的范围。由于在低速下需要低脉动转矩,因此限定磁体层以减小齿槽转矩并且使得三次谐波电流注入同时增加平均转矩并减小脉动转矩。根据基于大量机器的数值模拟的选择程序,可以看出,设计具有两个相同的径向磁化磁体(覆盖三分之二的极弧)的转子可以达到这一目标。对于等效的三相电机,双谐波五相电机的转矩脉动水平要低三倍以上,因此可以通过简单的控制策略获得,该策略旨在在旋转框架中实现恒定电流。驱动器的时间仿真证实了速度振荡的显着降低,尤其是在低速情况下。

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