Rectified Control Barrier Functions for High-Order Safety Constraints
Abstract
This paper presents a novel approach for synthesizing control barrier functions (CBFs) from high relative degree safety constraints: Rectified CBFs (ReCBFs). We begin by discussing the limitations of existing High-Order CBF approaches and how these can be overcome by incorporating an activation function into the CBF construction. We then provide a comparative analysis of our approach with related methods, such as CBF backstepping. Our results are presented first for safety constraints with relative degree two, then for mixed-input relative degree constraints, and finally for higher relative degrees. The theoretical developments are illustrated through simple running examples and an aircraft control problem.
Cite
@article{arxiv.2412.03708,
title = {Rectified Control Barrier Functions for High-Order Safety Constraints},
author = {Pio Ong and Max H. Cohen and Tamas G. Molnar and Aaron D. Ames},
journal= {arXiv preprint arXiv:2412.03708},
year = {2025}
}
Comments
6 pages, submitted to L-CSS/ACC 2025