English

Learning Friction Model for Magnet-actuated Tethered Capsule Robot

Robotics 2021-10-04 v3 Systems and Control Systems and Control

Abstract

The potential diagnostic applications of magnet-actuated capsules have been greatly increased in recent years. For most of these potential applications, accurate position control of the capsule have been highly demanding. However, the friction between the robot and the environment as well as the drag force from the tether play a significant role during the motion control of the capsule. Moreover, these forces especially the friction force are typically hard to model beforehand. In this paper, we first designed a magnet-actuated tethered capsule robot, where the driving magnet is mounted on the end of a robotic arm. Then, we proposed a learning-based approach to model the friction force between the capsule and the environment, with the goal of increasing the control accuracy of the whole system. Finally, several real robot experiments are demonstrated to showcase the effectiveness of our proposed approach.

Keywords

Cite

@article{arxiv.2109.07112,
  title  = {Learning Friction Model for Magnet-actuated Tethered Capsule Robot},
  author = {Yi Wang and Yuyang Tu and Yuchen He and Xutian Deng and Ziwei Lei and Jianwei Zhang and Miao Li},
  journal= {arXiv preprint arXiv:2109.07112},
  year   = {2021}
}

Comments

Because it overlaps with the previous article arvix:2108.07151, we apply for return.Thank you

R2 v1 2026-06-24T05:58:42.140Z