Pose-Following with Dual Quaternions
Abstract
This work focuses on pose-following, a variant of path-following in which the goal is to steer the system's position and attitude along a path with a moving frame attached to it. Full body motion control, while accounting for the additional freedom to self-regulate the progress along the path, is an appealing trade-off. Towards this end, we extend the well-established dual quaternion-based pose-tracking method into a pose-following control law. Specifically, we derive the equations of motion for the full pose error between the geometric reference and the rigid body in the form of a dual quaternion and dual twist. Subsequently, we formulate an almost globally asymptotically stable control law. The global attractivity of the presented approach is validated in a spatial example, while its benefits over pose-tracking are showcased through a planar case-study.
Cite
@article{arxiv.2308.09507,
title = {Pose-Following with Dual Quaternions},
author = {Jon Arrizabalaga and Markus Ryll},
journal= {arXiv preprint arXiv:2308.09507},
year = {2023}
}
Comments
This paper has been accepted for publication at the IEEE Conference on Decision and Control (CDC), 2023. Copyright @ IEEE