Optimal Trajectory Tracking of Nonholonomic Mechanical Systems: a geometric approach
Systems and Control
2024-12-20 v1 Systems and Control
Optimization and Control
Abstract
We study the tracking of a trajectory for a nonholonomic system by recasting the problem as an optimal control problem. The cost function is chosen to minimize the error in positions and velocities between the trajectory of a nonholonomic system and the desired reference trajectory evolving on the distribution which defines the nonholonomic constraints. We prepose a geometric framework since it describes the class of nonlinear systems under study in a coordinate-free framework. Necessary conditions for the existence of extrema are determined by the Pontryagin Minimum Principle. A nonholonomic fully actuated particle is used as a benchmark example to show how the proposed method is applied.
Keywords
Cite
@article{arxiv.1901.10374,
title = {Optimal Trajectory Tracking of Nonholonomic Mechanical Systems: a geometric approach},
author = {Aradhana Nayak and Rodrigo Sato Martín de Almagro and Leonardo Colombo and David Martín de Diego},
journal= {arXiv preprint arXiv:1901.10374},
year = {2024}
}
Comments
To appear in American Control Conference 2019