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Cascaded design methodology for switched reluctance motors considering optimum control

机译:考虑最佳控制的开关磁阻电动机的级联设计方法

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Switched reluctance motors (SRM) have a cheap and robust structure, which makes them interesting for electric vehicle applications. In this paper, a new optimization scheme for the design of SRM is proposed. The design methodology is then used to design a 127 kW high speed SRM for electric vehicles. The optimization procedure has a cascaded structure with a geometry optimization as the outer loop and a new control optimization as the inner loop. This new control scheme ensures maximum efficiency with the constraint of a minimum torque ripple by developing a current profile, which considers the non-linear behavior of the switched reluctance motor and the declining current dynamics with increasing speed. The control scheme is used to evaluate rated power and motor efficiency of the relevant operating points within the outer geometry optimization of the design methodology.
机译:开关磁阻电机(SRM)具有便宜且坚固的结构,这使其在电动汽车应用中变得很有趣。本文提出了一种新的SRM设计优化方案。然后,使用该设计方法来设计用于电动汽车的127 kW高速SRM。优化过程具有级联结构,其中几何优化作为外部循环,而新的控制优化作为内部循环。这种新的控制方案通过产生电流分布图来确保最大效率,并以最小的转矩波动为约束条件,该电流分布图考虑了开关磁阻电动机的非线性行为以及随着速度增加而下降的电流动态特性。该控制方案用于评估设计方法的外部几何优化内相关工作点的额定功率和电机效率。

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