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Torque-Ripple Minimization of Switched Reluctance Machines Through Current Profiling

机译:通过电流分析将开关磁阻电机的转矩脉动最小化

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This paper presents a novel method of profiling the phase currents to minimize the torque ripple of a switched reluctance machine. The method is a combination of machine design and control algorithm. The minimization is accomplished in three steps: The first step is to design a machine that has symmetric torque characteristics with an extended flat portion, the second step is to find the required current profile through simulation, and the third step is the fine tuning of the profile. The simulation is done to verify the method through a coupling of the finite-element-based machine model and the Matlab/Simulink-based dynamic controller model. The coupled simulation considers the nonlinearities, electrical loss, magnetic loss, and mutual coupling. Experimental verification validated the torque-ripple minimization procedure.
机译:本文提出了一种新型的相电流轮廓分析方法,以最大程度地减小开关磁阻电机的转矩脉动。该方法是机器设计和控制算法的结合。最小化可通过三个步骤完成:第一步是设计具有对称扭矩特性且具有扩展的平坦部分的电机,第二步是通过仿真找到所需的电流曲线,第三步是对电机进行微调。轮廓。通过基于有限元的机器模型和基于Matlab / Simulink的动态控制器模型的耦合,进行了仿真以验证该方法。耦合仿真考虑了非线性,电损耗,磁损耗和相互耦合。实验验证验证了转矩脉动最小化程序。

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