Predictor-Feedback Stabilization of Linear Switched Systems with State-Dependent Switching and Input Delay
Abstract
We develop a predictor-feedback control design for a class of linear systems with state-dependent switching. The main ingredient of our design is a novel construction of an exact predictor state. Such a construction is possible as for a given, state-dependent switching rule, an implementable formula for the predictor state can be derived in a way analogous to the case of nonlinear systems with input delay. We establish uniform exponential stability of the corresponding closed-loop system via a novel construction of multiple Lyapunov functionals, relying on a backstepping transformation that we introduce. We validate our design in simulation considering a switching rule motivated by communication networks.
Cite
@article{arxiv.2603.20027,
title = {Predictor-Feedback Stabilization of Linear Switched Systems with State-Dependent Switching and Input Delay},
author = {Andreas Katsanikakis and Nikolaos Bekiaris-Liberis and Delphine Bresch-Pietri},
journal= {arXiv preprint arXiv:2603.20027},
year = {2026}
}
Comments
6 pages, 3 figures, submitted to European Control Conference 2026 (ECC)