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Reduction of torque and radial force fluctuation in permanent magnet synchronous motors by means of multi-objective optimization

机译:通过多目标优化,永磁同步电动机中的扭矩和径向力波动的减小

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This work relates to external rotor type permanent magnet synchronous machines having surface mounted permanent magnets and two-layer non-overlapping windings. A short review of approaches to reduce fluctuation of forces presented in literature is given. As the reduction is associated in most cases with a negative influence on other important design goals, multi-objective optimizations are applied in conjunction with the finite element analysis yielding PARETO-optimal solutions with different preferences. PARETO-optimal solutions regarding the permanent magnet magnetization distribution and the current profiles minimizing the torque fluctuation of a 12-slot 8-pole machine and the higher frequency radial force harmonics in a 12-slot 10-pole machine are presented and discussed. A discrete PARETO-optimal magnetization distribution has been identified which promises a higher fundamental PM flux linkage amplitude compared to radial magnetization, but at a significantly lower cogging torque and torque ripple utilizing the balancing of open circuit voltage harmonics. Furthermore, it is shown that individual current harmonics affect individual radial force harmonics dominantly. A test setup is proposed and the numerically obtained instantaneous torque and the influence of current harmonics on the radial force amplitudes are verified with good agreement.
机译:这项工作涉及具有表面安装的永磁体和两层非重叠绕组的外转子型永磁同步机。给出了对减少文献中呈现的力波动的近似审查。随着在大多数情况下的减少相关的情况下,对于其他重要的设计目标的负面影响,可以结合有限元分析来应用多目标优化,从而产生具有不同偏好的静态最佳解决方案。据呈现并讨论了关于永磁磁化分布的普通磁铁磁化分布和电流曲线最小化12槽10极机中的较高频率径向谐波的电流曲线的最佳解决方案。已经识别了离散的静态最佳磁化分布,其与径向磁化相比,这是较高的PM磁通连杆幅度,而是利用开路电压谐波的平衡显着降低齿槽扭矩和扭矩脉动。此外,显示各个电流谐波影响各个径向力谐波。提出了一种测试设置,并且用良好的一致性验证了数值获得的瞬时扭矩和电流谐波对径向力幅度的影响。

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