English

An optimal open-loop strategy for handling a flexible beam with a robot manipulator

Robotics 2023-07-11 v1 Optimization and Control

Abstract

Fast and safe manipulation of flexible objects with a robot manipulator necessitates measures to cope with vibrations. Existing approaches either increase the task execution time or require complex models and/or additional instrumentation to measure vibrations. This paper develops a model-based method that overcomes these limitations. It relies on a simple pendulum-like model for modeling the beam, open-loop optimal control for suppressing vibrations, and does not require any exteroceptive sensors. We experimentally show that the proposed method drastically reduces residual vibrations -- at least 90% -- and outperforms the commonly used input shaping (IS) for the same execution time. Besides, our method can also execute the task faster than IS with a minor reduction in vibration suppression performance. The proposed method facilitates the development of new solutions to a wide range of tasks that involve dynamic manipulation of flexible objects.

Keywords

Cite

@article{arxiv.2210.00578,
  title  = {An optimal open-loop strategy for handling a flexible beam with a robot manipulator},
  author = {Shamil Mamedov and Alejandro Astudillo and Daniele Ronzani and Wilm Decré and Jean-Philippe Noël and Jan Swevers},
  journal= {arXiv preprint arXiv:2210.00578},
  year   = {2023}
}

Comments

Submitted to ICRA 2023

R2 v1 2026-06-28T02:33:43.850Z