Output-Feedback Control of Nonlinear Systems using Control Contraction Metrics and Convex Optimization
Optimization and Control
2014-06-06 v1 Systems and Control
Abstract
Control contraction metrics (CCMs) are a new approach to nonlinear control design based on contraction theory. The resulting design problems are expressed as pointwise linear matrix inequalities and are and well-suited to solution via convex optimization. In this paper, we extend the theory on CCMs by showing that a pair of "dual" observer and controller problems can be solved using pointwise linear matrix inequalities, and that when a solution exists a separation principle holds. That is, a stabilizing output-feedback controller can be found. The procedure is demonstrated using a benchmark problem of nonlinear control: the Moore-Greitzer jet engine compressor model.
Cite
@article{arxiv.1406.1256,
title = {Output-Feedback Control of Nonlinear Systems using Control Contraction Metrics and Convex Optimization},
author = {Ian R. Manchester and Jean-Jacques E. Slotine},
journal= {arXiv preprint arXiv:1406.1256},
year = {2014}
}
Comments
Conference submission