Back to Research papers
Research paper index

A model-free approach to control barrier functions for higher-order systems

Lukas Lanza, Johannes Köhler, Dario Dennstädt, Thomas Berger, Karl Worthmann

arXiv:2606.04790Published June 3, 20260 citations
  • eess.SY
  • math.OC
  • robotic
  • robot

Abstract

Control barrier functions (CBFs) are a widely applied modular tool to ensure safe operation of nonlinear dynamical control systems. However, for their construction accurate knowledge of the system dynamics is typically needed. This requirement was recently alleviated for relative-degree-one systems using techniques from prescribed performance control (PPC) or funnel control (FC). This article extends the model-free CBF design to nonlinear systems of arbitrary relative degree. Moreover, we show with a simple example that a straightforward extension of existing results for relative-degree-one systems fails. Instead, we utilize novel techniques from funnel control to characterize a subset of the controls satisfying a CBF condition without requiring a dynamic model or state measurement. Finally, we demonstrate the applicability of our results on a seven degrees of freedom robotic manipulator with relative degree two.

Read the original paper

This page indexes public paper metadata. The manuscript remains with its original publisher and authors.