Modeling of Dynamical Systems via Successive Graph Approximations
Systems and Control
2019-10-10 v1 Systems and Control
Optimization and Control
Abstract
In this work, we propose a non-parametric technique for online modeling of systems with unknown nonlinear Lipschitz dynamics. The key idea is to successively utilize measurements to approximate the graph of the state-update function using envelopes described by quadratic constraints. The proposed approach is then demonstrated on two control applications: (i) computation of tractable bounds for unmodeled dynamics, and (ii) computation of positive invariant sets. We further highlight the efficacy of the proposed approach via a detailed numerical example.
Keywords
Cite
@article{arxiv.1910.03719,
title = {Modeling of Dynamical Systems via Successive Graph Approximations},
author = {Siddharth H. Nair and Monimoy Bujarbaruah and Francesco Borrelli},
journal= {arXiv preprint arXiv:1910.03719},
year = {2019}
}