Backstepping Design for Incremental Input-to-State Stabilization of Unknown Systems
Systems and Control
2024-11-05 v1 Systems and Control
Dynamical Systems
Abstract
Incremental stability of dynamical systems ensures the convergence of trajectories from different initial conditions towards each other rather than a fixed trajectory or equilibrium point. Here, we introduce and characterize a novel class of incremental Lyapunov functions, an incremental stability notion known as Incremental Input-to-State practical Stability ({\delta}-ISpS). Using Gaussian Process, we learn the unknown dynamics of a class of control systems. We then present a backstepping control design scheme that provides state-feedback controllers that render the partially unknown control system {\delta}-ISpS. To show the effectiveness of the proposed controller, we implement it in two case studies.
Cite
@article{arxiv.2411.01872,
title = {Backstepping Design for Incremental Input-to-State Stabilization of Unknown Systems},
author = {David Smith Sundarsingh and Bhabani Shankar Dey and Pushpak Jagtap},
journal= {arXiv preprint arXiv:2411.01872},
year = {2024}
}
Comments
15 page, 4 figures