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Switched reluctance motor speed performance simulation study based on torque ripple suppression

机译:基于转矩脉动抑制的开关磁阻电机转速性能仿真研究

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This paper presents a novel speed control system with the torque ripple suppression based on torque observer. The switched reluctance motor drive system is hard to obtain good speed performance especially at low speed due to its critical nonlinearity. Relatively accurate mathematical model of the motor is difficult to establish. In the paper, a torque observer is designed to get the actual torque and the single neuron adaptive PI controller is designed to adjust the speed error. The sliding mode controller is designed to adjust the torque error. From the actual current which tracking the expected current, the torque ripple could be reduced to be small and the speed ripple could be small too. The simulation model has been set up to validate the proposed method. From the simulation results, it is known that the speed control by the torque ripple suppression has better speed performance.
机译:本文提出了一种基于转矩观测器的具有转矩脉动抑制的新型速度控制系统。开关磁阻电动机驱动系统由于其关键的非线性而难以获得良好的速度性能,尤其是在低速情况下。很难建立相对准确的电动机数学模型。在本文中,设计了一个扭矩观测器来获取实际扭矩,并设计了单个神经元自适应PI控制器来调节速度误差。滑模控制器设计用于调节扭矩误差。从跟踪预期电流的实际电流来看,转矩脉动可以减小到很小,速度脉动也可以很小。建立了仿真模型以验证所提出的方法。从仿真结果可以知道,通过转矩脉动抑制的速度控制具有更好的速度性能。

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