Virtual nonlinear nonholonomic constraints from a symplectic point of view
Differential Geometry
2025-04-02 v1 Optimization and Control
Abstract
In this paper, we provide a geometric characterization of virtual nonlinear nonholonomic constraints from a symplectic perspective. Under a transversality assumption, there is a unique control law making the trajectories of the associated closed-loop system satisfy the virtual nonlinear nonholonomic constraints. We characterize them in terms of the symplectic structure on induced by a Lagrangian function and the almost-tangent structure. In particular, we show that the closed-loop vector field satisfies a geometric equation of Chetaev type. Moreover, the closed-loop dynamics is obtained as the projection of the uncontrolled dynamics to the tangent bundle of the constraint submanifold defined by the virtual constraints.
Cite
@article{arxiv.2504.00866,
title = {Virtual nonlinear nonholonomic constraints from a symplectic point of view},
author = {Efstratios Stratoglou and Alexandre Anahory Simoes and Anthony Bloch and Leonardo Colombo},
journal= {arXiv preprint arXiv:2504.00866},
year = {2025}
}
Comments
Conference paper