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首页> 外文期刊>International Journal of Control, Automation, and Systems >Transverse Vibration Control of Axially Moving Web Systems by Regulation of Axial Tension
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Transverse Vibration Control of Axially Moving Web Systems by Regulation of Axial Tension

机译:通过轴向张力调节来控制轴向运动的Web系统的横向振动

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摘要

In this paper, an active control scheme to suppress the transverse vibrations of an axially moving web system by regulating its transport velocity to track a desired profile is investigated. The spatially varying tension and the time-varying transport velocity of the moving web are inter-related. The system dynamics includes the equations of motion of the moving web and the dynamics of the drive rollers at boundaries of the web span. The two roller motors provide control torque inputs to the web system. The strategy for vibration control is the regulation of the axial tension in reference to a designed profile, so that the vibration energy of the moving web system decays. The designed profile for the axial tension is designed via the total mechanical energy of the axially moving web system. The Lyapunov method is employed to derive the model-based torque control laws ensuring that the transverse vibration and the velocity tracking error converge to zero exponentially. The effectiveness of the proposed control scheme is demonstrated via numerical simulations.
机译:在本文中,研究了一种主动控制方案,该方案通过调节其传输速度以跟踪所需轮廓来抑制轴向移动的腹板系统的横向振动。运动幅材的空间变化张力和时变输送速度是相互关联的。系统动力学包括运动纤网的运动方程式和纤网跨度边界处的驱动辊的动力学。两个滚轴电机为纸幅系统提供控制扭矩输入。振动控制的策略是参考设计轮廓来调节轴向张力,以使移动的幅材系统的振动能量衰减。通过轴向移动的腹板系统的总机械能来设计轴向张力的设计轮廓。采用Lyapunov方法推导基于模型的转矩控制定律,以确保横向振动和速度跟踪误差指数收敛于零。通过数值仿真证明了所提出的控制方案的有效性。

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