Energy-Gain Control of Time-Varying Systems: Receding Horizon Approximation
Abstract
Standard formulations of prescribed worst-case disturbance energy-gain control policies for linear time-varying systems depend on all forward model data. In discrete time, this dependence arises through a backward Riccati recursion. This article is about the infinite-horizon gain performance of state feedback policies with only finite receding-horizon preview of the model parameters. The proposed synthesis of controllers subject to such a constraint leverages the strict contraction of lifted Riccati operators under uniform controllability and observability. The main approximation result is a sufficient number of preview steps for the incurred performance loss to remain below any set tolerance, relative to the baseline gain bound of the associated infinite-preview controller. Aspects of the result are explored in a numerical example.
Keywords
Cite
@article{arxiv.2512.21051,
title = {Energy-Gain Control of Time-Varying Systems: Receding Horizon Approximation},
author = {Jintao Sun and Michael Cantoni},
journal= {arXiv preprint arXiv:2512.21051},
year = {2026}
}
Comments
Accepted to appear in IEEE TAC