Stabilizing Controllers for Multi-Input, Singular Control Gain Systems
Abstract
This paper proposes a new methodology for design of a stabilizing control law for multi-input linear systems with time-varying, singular gains on the control. The results presented here assume the control gain to satisfy persistence of excitation which is a necessary condition for existence of stabilizing controllers in the presence of unstable drift. This work involves a novel persistence filter construction and provides a significant extension to the authors' previous result on stabilization of single-input linear systems with time-varying singular gains. An application to underactuated spacecraft stabilization is shown which illustrates the interesting features of the time-varying control design in stabilization of nonlinear dynamical systems. Finally, the development of an observer counterpart of these results is presented in the presence of multiple-outputs subject to singular measurement gains.
Cite
@article{arxiv.1410.4408,
title = {Stabilizing Controllers for Multi-Input, Singular Control Gain Systems},
author = {Srikant Sukumar and Maruthi R. Akella},
journal= {arXiv preprint arXiv:1410.4408},
year = {2014}
}
Comments
A version of this paper was presented at the IEEE Conference in Decision and Control, 2012 in Maui, Hawaii