Reference
F. Cordiano, M. Fochesato, L. Huang, and B. De Schutter, "Provably-stable
stochastic MPC for a class of nonlinear contractive systems,"
Proceedings of the 22nd IFAC World Congress, Yokohama, Japan,
pp. 11242-11248, July 2023.
Abstract
We present a model predictive control framework for a class of nonlinear
systems affected by additive stochastic disturbances with (possibly) unbounded
support. We consider hard input constraints and chance state constraints and we
employ the unscented transform method to propagate the disturbances over the
nonlinear dynamics in a computationally efficient manner. The main contribution
of our work is the establishment of sufficient conditions for stability and
recursive feasibility of the closed-loop system, based on the design of a
terminal cost and a terminal set. We focus here on a special class of nonlinear
systems that exhibit contractive properties in the dynamics. By assuming this
property, we propose a novel approach to efficiently compute the terminal
conditions without the need of performing any linearization of the dynamics.
Finally, we provide an illustrative example to corroborate our theoretical
findings.
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BibTeX
@inproceedings{CorFoc:23-020,
author = {Cordiano, Francesco and Fochesato, Marta and Huang, Linbin and
De Schutter, Bart},
title = {Provably-Stable Stochastic {MPC} for a Class of Nonlinear
Contractive Systems},
booktitle = {Proceedings of the 22nd IFAC World Congress},
address = {Yokohama, Japan},
pages = {11242--11248},
month = jul,
year = {2023}
}