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Optimal Safety Control using High-Order Control Barrier Functions

Neng Li, Zuodong Pan, Jiaxing Wang, Weiguo Xia, Wei Ren

Year
2026
Access
Open access

Abstract

This paper investigates the optimal safety control problem of nonlinear control systems by proposing novel high-order control barrier functions (HOCBFs). Different from zeroing HOCBFs, two novel HOCBFs are derived and the safety controllers are designed in an explicit way. Next, we implement vector Lyapunov function approach to propose a novel high-order control Lyapunov function (HOCLF) for the stabilization control problem. The relations between the proposed and existing HOCBFs are discussed. Afterwards, the compatibility of the proposed HOCLF and HOCBF is addressed to guarantee the stabilization and safety control objectives simultaneously, and thus the optimal controller is established. Finally, a numerical example from the navigation problem of quadrotors is presented to illustrate the efficacy of the derived results.

Keywords

control barrier functionsoptimal safety controlnonlinear systemsquadrotor navigationstabilization

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