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Output feedback exponential stabilization of a nonlinear 1-D wave equation with boundary input * * This work was partially supported by grant no. 800/14 of the Israel Science Foundation

机译:边界输入为 * * 此项工作部分获得了批准号的支持。以色列科学基金会800/14

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摘要

This paper develops systematically the output feedback exponential stabilization for a one-dimensional unstable/anti-stable wave equation where the control boundary suffers from both internal nonlinear uncertainty and external disturbance. Using only two displacement signals, we propose a disturbance estimator that not only can estimate successfully the disturbance in the sense that the error is in L 2 (0, ∞) but also is free high-gain. With the estimated disturbance, we design a state observer that is exponentially convergent to the state of original system. An observer-based output feedback stabilizing control law is proposed. The disturbance is then canceled in the feedback loop by its approximated value. The closed-loop system is shown to be exponentially stable and it can be guaranteed that all internal signals are uniformly bounded.
机译:本文系统地研究了一维不稳定/反稳定波动方程的输出反馈指数镇定问题,其中控制边界同时受到内部非线性不确定性和外部干扰的影响。我们仅使用两个位移信号,提出了一种干扰估计器,它不仅可以成功地估计出误差在L 2(0,∞)以内的干扰,而且可以自由地获得高增益。利用估计的干扰,我们设计了一个状态观测器,该状态以指数形式收敛到原始系统的状态。提出了一种基于观测器的输出反馈稳定控制律。然后在反馈回路中通过其近似值消除干扰。所示的闭环系统是指数稳定的,可以保证所有内部信号均一地有界。

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