English

Unmatched Control Barrier Functions: Certainty Equivalence Adaptive Safety

Systems and Control 2022-08-17 v2 Robotics Systems and Control

Abstract

This work applies universal adaptive control to control barrier functions to achieve forward invariance of a safe set despite the presence of unmatched parametric uncertainties. The approach combines two ideas. The first is to construct a family of control barrier functions that ensures the system is safe for all possible models. The second is to use online parameter adaptation to methodically select a control barrier function and corresponding safety controller from the allowable set. While such a combination does not necessarily yield forward invariance without additional requirements on the barrier function, we show that such invariance can be established by simply adjusting the adaptation gain online. It is also shown that the developed method is applicable to systems with safety constraints that have a relative degree greater than one. This work thus represents the first adaptive safety approach that successfully employs the certainty equivalence principle for general state constraints without sacrificing safety guarantees.

Keywords

Cite

@article{arxiv.2207.13873,
  title  = {Unmatched Control Barrier Functions: Certainty Equivalence Adaptive Safety},
  author = {Brett T. Lopez and Jean-Jacques Slotine},
  journal= {arXiv preprint arXiv:2207.13873},
  year   = {2022}
}

Comments

Added high relative degree results

R2 v1 2026-06-25T01:17:37.088Z