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Robustness to In-Domain Viscous Damping of a Collocated Boundary Adaptive Feedback Law for an Antidamped Boundary Wave PDE

机译:抗阻尼边界波PDE的边界自适应反馈律在域内粘性阻尼的鲁棒性

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摘要

In this paper, the robustness to model mismatch of a preexisting collocated boundary adaptive feedback law is investigated. This control law was originally designed for an antidamped pure wave partial differential equation (PDE). Actuation and measurements are located at the same boundary. Adaptive terms account for uncertain parameters located at the antidamped boundary, opposite to the collocated actuation and measurement. By extending and transforming the system state using, in particular, back-stepping, this paper establishes that this controller is robust to sufficiently small in-domain damping. In particular, both stability and attractivity (convergence) are established similarly as in the nominal case. Note moreover that, assuming that some parameters are known, the exponential stability to an attractor holds. Simulations are performed to illustrate the interest of this study to attenuate mechanical vibrations in an oil-drilling context.
机译:本文研究了已有的并置边界自适应反馈定律不匹配模型的鲁棒性。该控制律最初是为反阻尼纯波偏微分方程(PDE)设计的。驱动和测量位于同一边界。自适应项说明位于抗阻尼边界的不确定参数,与并置的驱动和测量相反。通过使用尤其是反向步进来扩展和变换系统状态,本文确定了该控制器对于足够小的域内阻尼具有鲁棒性。特别地,与标称情况相似地建立了稳定性和吸引力(收敛性)。此外,请注意,假设某些参数已知,则吸引子的指数稳定性成立。进行仿真以说明该研究的目的是减弱石油钻井环境中的机械振动。

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