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An improved variable structure design for velocity control of a permanent magnet linear synchronous motor

机译:永磁直线同步电动机速度控制的改进变结构设计

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In this paper, in order to suppress the force ripple of a permanent magnet linear synchronous motor (PMLSM) and ideally to access a constant velocity, a model reference adaptive sliding mode control (SMC) is proposed. The main goal is to reduce velocity variations in the presence of an oscillatory load, uncertainties and parameter variations. Therefore, the emphasis is put on robustness and vibration suppression. Moreover, to eliminate the chattering phenomenon and to improve SMC, some modified techniques are implemented. These enhancing approaches are utilization of saturation function, exponential function, sigmoid function and fuzzy-genetic controller. Finally, in order to evaluate the performance of the proposed method, the simulation results are provided in which the robustness of the controller against the uncertainties and parameter variations is examined by intentional changing of the transfer function.
机译:为了抑制永磁直线同步电动机(PMLSM)的力波动并理想地获得恒定速度,本文提出了一种模型参考自适应滑模控制(SMC)。主要目标是减少存在振荡负载,不确定性和参数变化时的速度变化。因此,重点放在鲁棒性和振动抑制上。此外,为了消除颤动现象并改善SMC,实施了一些改进的技术。这些增强方法是利用饱和度函数,指数函数,S形函数和模糊遗传控制器。最后,为了评估所提出方法的性能,提供了仿真结果,其中通过有意改变传递函数来检查控制器针对不确定性和参数变化的鲁棒性。

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