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Optimization of PMSM Performance with Torque Ripple Reduction and Loss Considerations

机译:用扭矩脉动减少和损耗考虑的PMSM性能优化

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The performance of an optimized PMSM machine could be improved by using a control-based torque ripple reduction technique. Optimization of PMSM performance including a torque ripple reduction current injection technique and increasing the operating current, while keeping copper losses to a minimum could lead to a larger set of possible optimal solutions. By adding a torque ripple reduction method to the previously optimized geometries that would be not acceptable, they can become acceptable and optimal, with minimum added losses. Combining cases studied through FEM and a splines regression model together, with a non-sorting genetic algorithm, solutions that have injection and no injection are found to be optimal. This allows the designer to have geometries that would otherwise be rejected become acceptable.
机译:通过使用基于控制的扭矩脉动减少技术,可以改善优化的PMSM机器的性能。优化PMSM性能,包括扭矩脉动减少电流注入技术并增加工作电流,同时将铜损耗保持为最小可能导致更大的可能最佳解决方案。通过将扭矩纹波减少方法添加到先前优化的几何形状,这是不可接受的,它们可以成为可接受和最佳的,最小额外的损耗。将通过FEM和花键回归模型研究的组合案例,具有非分类遗传算法,具有注射的溶液和未注射的溶液是最佳的。这允许设计者具有将被拒绝的几何形状可接受。

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