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Transverse Vibration Control of Axially Moving Membranes by Regulation of Axial Velocity

机译:通过轴向速度调节轴向移动膜的横向振动控制

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摘要

In this brief, a novel control algorithm that suppresses the transverse vibrations of an axially moving membrane system is presented. The proposed control method is to regulate the axial transport velocity of the membrane so as to track a desired profile according to which the vibration energy of the membrane at the end of transport decays most quickly. An optimal control problem that generates the desired profile of the axial transport velocity is solved by the conjugate gradient method. The Galerkin method is applied in order to reduce the partial differential equations describing the dynamics of the axially moving membrane into two sets of ordinary differential equations (ODEs) representing longitudinal/lateral and transverse displacements. For control design purposes, these ODEs are rewritten into state-space equations. The vibration energy of the axially moving membrane is represented by a quadratic form of the state variables. In the optimal control problem, the cost function modified from the vibration energy function is subject to the constraints on the state variables, and the axial transport velocity is considered as a control input. The effectiveness of the proposed control method is illustrated via numerical simulations.
机译:在此简介中,提出了一种新颖的控制算法,该算法可抑制轴向移动膜系统的横向振动。所提出的控制方法是调节膜的轴向输送速度,以便跟踪所需的轮廓,根据该轮廓,输送结束时膜的振动能量衰减最快。共轭梯度法解决了产生所需轴向传输速度轮廓的最佳控制问题。应用Galerkin方法是为了将描述轴向移动膜动力学的偏微分方程简化为代表纵向/横向和横向位移的两组常微分方程(ODE)。出于控制设计目的,这些ODE被重写为状态空间方程。轴向移动膜的振动能量由状态变量的二次形式表示。在最优控制问题中,由振动能量函数修改的成本函数受状态变量的约束,并且轴向传输速度被视为控制输入。通过数值仿真说明了所提出的控制方法的有效性。

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