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Dynamic matrix control of the lateral position of a moving web

机译:动态矩阵控制运动幅材的横向位置

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The lateral motion of the web is one of the most common problems in roll-to-roll (R2R) systems, which results in degraded product quality, waste, or even processing interruption. An industrial proportional-integral-derivative (PID) controller with fixed gain is mostly used for lateral position control. In fact, the model parameters of the web lateral dynamics such as the tension and the transport velocity of the web are seldom exact. Variations of these parameters could significantly affect the lateral web dynamics. A dynamic matrix control (DMC) strategy is adopted in the offset pivot web guide to control the lateral position of the web, which does not depend on accurate model. Simulations of the DMC controller and the PID controller was carried out with a sinusoidal disturbance in different web conditions. The results show that DMC controller performs much better than PID controller with good disturbance rejection. It is observed that the lateral position of the DMC controller is less than a half of that of the PID controller. As the web velocity decreases or the web tension increases, the lateral position becomes smaller.
机译:卷筒纸的横向运动是卷对卷(R2R)系统中最常见的问题之一,这会导致产品质量下降,浪费甚至中断加工。具有固定增益的工业比例积分微分(PID)控制器通常用于横向位置控制。实际上,幅材横向动力学的模型参数(例如幅材的张力和传输速度)很少准确。这些参数的变化可能会显着影响横向腹板动力学。偏置枢轴腹板导轨采用动态矩阵控制(DMC)策略来控制腹板的横向位置,这不依赖于精确的模型。 DMC控制器和PID控制器的仿真是在不同幅材条件下以正弦波干扰进行的。结果表明,DMC控制器的性能优于PID控制器,具有良好的抗扰性。可以看到,DMC控制器的横向位置小于PID控制器的横向位置的一半。随着幅材速度降低或幅材张力增加,横向位置会变小。

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