English

Stable Contact Guaranteeing Motion/Force Control for an Aerial Manipulator on an Arbitrarily Tilted Surface

Robotics 2023-01-20 v1 Systems and Control Systems and Control

Abstract

This study aims to design a motion/force controller for an aerial manipulator which guarantees the tracking of time-varying motion/force trajectories as well as the stability during the transition between free and contact motions. To this end, we model the force exerted on the end-effector as the Kelvin-Voigt linear model and estimate its parameters by recursive least-squares estimator. Then, the gains of the disturbance-observer (DOB)-based motion/force controller are calculated based on the stability conditions considering both the model uncertainties in the dynamic equation and switching between the free and contact motions. To validate the proposed controller, we conducted the time-varying motion/force tracking experiments with different approach speeds and orientations of the surface. The results show that our controller enables the aerial manipulator to track the time-varying motion/force trajectories.

Keywords

Cite

@article{arxiv.2301.08078,
  title  = {Stable Contact Guaranteeing Motion/Force Control for an Aerial Manipulator on an Arbitrarily Tilted Surface},
  author = {Jeonghyun Byun and Byeongjun Kim and Changhyeon Kim and Donggeon David Oh and H. Jin Kim},
  journal= {arXiv preprint arXiv:2301.08078},
  year   = {2023}
}

Comments

to be presented in 2023 IEEE International Conference on Robotics and Automations (ICRA), London, United Kingdom, 2023

R2 v1 2026-06-28T08:15:22.771Z