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Torque Sharing Function Optimization for Extended Speed Range Control in Switched Reluctance Motor Drive

机译:转换磁阻电机驱动器扩展速度控制扭矩共享功能优​​化

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Torque sharing function (TSF) is an efficient torque ripple minimization approach in switched reluctance motor (SRM) drives in low and medium speed ranges. In this paper an optimized TSF is presented to enhance the torque profile of SRM over an extended speed range while maintaining an acceptable value of the average output torque. A secondary objective is to minimize the RMS phase current also included in the optimization problem. The control variables are the switch-on angle and the overlap angle. An improved version of the ant colony optimization (ACO) based procedure is employed in this work. Additionally, a highly trusted SRM model is built using finite element method (FEM), this model is then adopted by the optimizer to accurately select the optimal values of the control variables. Simulation is carried out on 4 kW, 1500 rpm, four-phase 8/6 SRM.
机译:扭矩共享功能(TSF)是低速率范围的开关磁阻电机(SRM)驱动器中有效的扭矩纹波最小化方法。在本文中,提出了一种优化的TSF,以在延长速度范围内增强SRM的扭矩轮廓,同时保持平均输出扭矩的可接受值。次要目标是最小化还包括在优化问题中的RMS相电流。控制变量是接通角度和重叠角度。在这项工作中采用了基于蚁群优化(ACO)的过程的改进版本。另外,使用有限元方法(FEM)构建了高度可信的SRM模型,通过优化程序采用该模型来准确地选择控制变量的最佳值。仿真在4 kW,1500 rpm,4阶段8/6 SRM中进行。

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