English

Impact Invariant Control with Applications to Bipedal Locomotion

Robotics 2022-03-14 v2

Abstract

When legged robots impact their environment, they undergo large changes in their velocities in a small amount of time. Measuring and applying feedback to these velocities is challenging, and is further complicated due to uncertainty in the impact model and impact timing. This work proposes a general framework for adapting feedback control during impact by projecting the control objectives to a subspace that is invariant to the impact event. The resultant controller is robust to uncertainties in the impact event while maintaining maximum control authority over the impact invariant subspace. We demonstrate the utility of the projection on a walking controller for a planar five-link-biped and on a jumping controller for a compliant 3D bipedal robot, Cassie. The effectiveness of our method is shown to translate well on hardware.

Keywords

Cite

@article{arxiv.2103.06907,
  title  = {Impact Invariant Control with Applications to Bipedal Locomotion},
  author = {William Yang and Michael Posa},
  journal= {arXiv preprint arXiv:2103.06907},
  year   = {2022}
}

Comments

8 pages, 6 figures, Accepted in IROS 2021

R2 v1 2026-06-24T00:01:32.986Z