Tube-based Control Barrier Function with Integral Quadratic Constraints for Unknown Input Delay

  • 첸잉슈아이
  • 김진성
  • Lee, Seung-Hi
  • Chung, Chung Choo
Citations

WEB OF SCIENCE

5
Citations

SCOPUS

6

초록

This paper proposes a Control Barrier Function (CBF)-based controller design to achieve safety for systems subjecting to unknown input delay and additive disturbance. Integral quadratic constraints characterizing the input-output behavior of the unmodeled dynamics caused by the unknown input delay are used to generate a bound of the error between the nominal model and the true uncertain system. The bound is incorporated into a tube-based CBF formulation to ensure robust system safety. The proposed method guarantees that the constraints are input affine, so the safe controller can be implemented by solving a quadratic programming problem in real-time. A simple example demonstrates the effectiveness of the tube-based CBF approach.

키워드

SafetyDelaysUncertaintyOptimizationUncertain systemsQuadratic programmingIntegral equationsroboticsrobust controlsafety criticalSYSTEMSSAFETY
제목
Tube-based Control Barrier Function with Integral Quadratic Constraints for Unknown Input Delay
저자
첸잉슈아이김진성Lee, Seung-HiChung, Chung Choo
DOI
10.1109/LCSYS.2023.3278688
발행일
2023-05
유형
Article
저널명
IEEE Control Systems Letters
7
페이지
1730 ~ 1735