Incremental Gain Computation and Regulation of Discrete-time Positive Lur\'e Systems using Linear Programming
Optimization and Control
2025-06-02 v1 Systems and Control
Systems and Control
Abstract
This work approaches the problem of computing incremental and gains for discrete-time positive systems in \lure feedback with static memoryless nonlinearities, and regulating the gain through the design of a state-feedback controller. Finite incremental gains provide a quantitative measure of robustness for trajectories, and will ensure that all pairs of trajectories will converge to a fixed point or will diverge together in the absence of an applied input. Upper-bounds on these incremental gains can be computed through linear programming. Computation and regulation of the and incremental gains are verified by numerical examples.
Cite
@article{arxiv.2505.24386,
title = {Incremental Gain Computation and Regulation of Discrete-time Positive Lur\'e Systems using Linear Programming},
author = {Jared Miller},
journal= {arXiv preprint arXiv:2505.24386},
year = {2025}
}
Comments
13 pages, 4 images