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

机译:一种双谐波五相SPM机,具有低纹波扭矩的海洋推进力

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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:本文解决了用于海洋推进的双谐波五相表面上安装永磁体(SPM)机的设计。由特定的20个槽-8杆配置产生的双谐波特性,这使得第三谐波电流注入的高值。因此,在平均扭矩,速度范围,损耗控制和扭矩质量方面可以提高机器性能,这最后一个特征是纸张的范围。由于低升高的扭转扭矩以低速度而言,磁体层被定义为减小齿槽扭矩,并使三次谐波电流注入增加平均扭矩并同时降低脉动扭矩。根据基于大量机器的数值模拟的选择过程,看起来与两个相同的径向磁化磁铁一起设计转子,该磁铁覆盖杆弧的三分之二允许达到该目标。参考等效三相机,双谐波五相机的扭矩纹波电平的速度越小三倍,因此通过简单的控制策略获得,其旨在实现旋转框架中的恒定电流。驱动器的时间模拟确认速度振荡的显着降低,特别是在低速下。

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