On Controller Design for Systems on Manifolds in Euclidean Space
Abstract
A new method is developed to design controllers in Euclidean space for systems defined on manifolds. The idea is to embed the state-space manifold of a given control system into some Euclidean space , extend the system from to the ambient space , and modify it outside to add transversal stability to in the final dynamics in . Controllers are designed for the final system in the ambient space . Then, their restriction to produces controllers for the original system on . This method has the merit that only one single global Cartesian coordinate system in the ambient space is used for controller synthesis, and any controller design method in , such as the linearization method, can be globally applied for the controller synthesis. The proposed method is successfully applied to the tracking problem for the following two benchmark systems: the fully actuated rigid body system and the quadcopter drone system.
Keywords
Cite
@article{arxiv.1807.03475,
title = {On Controller Design for Systems on Manifolds in Euclidean Space},
author = {Dong Eui Chang},
journal= {arXiv preprint arXiv:1807.03475},
year = {2018}
}
Comments
International Journal of Robust and Nonlinear Control (Accepted July 2018