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Dual-Loop Adaptive Iterative Learning Control for a Timoshenko Beam With Output Constraint and Input Backlash

机译:具有输出约束和输入反冲的Timoshenko梁的双环自适应迭代学习控制

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摘要

In this paper, vibration control and output constraint are considered for a Timoshenko beam system with input backlash and external disturbances. By integrating iterative learning control (ILC) into adaptive control, two dual-loop adaptive ILC schemes are proposed in the presence of the input backlash. Two observers are designed to estimate two bounded terms, which are divided from the backlash inputs. Based on the defined barrier composite energy function, all the signals are proved to be bounded in each iteration. Along the iteration axis: 1) the endpoint transverse displacements and the endpoint angle displacements are restrained; 2) the transverse vibrations and the rotation vibrations are suppressed to zero; and 3) the spatiotemporally varying disturbance and the time-varying disturbances are rejected. Simulations are provided to manifest the effectiveness of the proposed control laws.
机译:在本文中,考虑了带有输入反冲和外部干扰的Timoshenko梁系统的振动控制和输出约束。通过将迭代学习控制(ILC)集成到自适应控制中,在存在输入反冲的情况下,提出了两种双环自适应ILC方案。设计了两个观测器来估计两个有界项,这些有界项从反冲输入中除掉。基于定义的势垒复合能量函数,所有信号都被证明在每次迭代中都是有界的。沿迭代轴:1)约束端点横向位移和端点角度位移; 2)将横向振动和旋转振动抑制为零; 3)时空变化扰动和时变扰动被拒绝。提供仿真以证明所提出的控制律的有效性。

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