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Optimization of PMSM Performance with Torque Ripple Reduction and Loss Considerations

机译:通过降低转矩纹波和损耗考虑来优化PMSM性能

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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:可以通过使用基于控制的转矩脉动减小技术来改善优化的PMSM机器的性能。 PMSM性能的优化包括降低转矩纹波电流注入技术和增加工作电流,同时将铜损保持在最低水平,这可能会导致产生更多可能的最佳解决方案。通过将扭矩纹波减小方法添加到先前无法接受的优化几何形状中,它们可以变得可接受且最佳,且损失最小。将通过有限元法和样条回归模型研究的案例结合非分类遗传算法相结合,发现有注入和无注入的解决方案是最佳的。这允许设计者具有可以被拒绝的几何形状。

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