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Stability-Constrained Variable Autonomy Control for Counter-UAS Engagement under Time-Critical Conditions

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Abstract

This paper proposes a control-theoretic framework for variable autonomy in time-critical counter-UAS interception. Authority allocation between autonomous and human controllers is modelled as a dynamic state that continuously blends control inputs under bounded human delay and uncertainty. The resulting closed-loop system is formulated as a parameter-varying system with rate-limited autonomy dynamics. Sufficient conditions for stability and safe authority handover are derived. Simulation results on a planar interception model demonstrate improved stability and constraint satisfaction compared to fixed-autonomy and hard-switching baselines.
Original languageEnglish
Title of host publicationProceedings of the IFAC World Congress
Place of PublicationBusan, South Korea
Number of pages4
Publication statusPublished - 28 Aug 2026

Keywords

  • Robotics
  • Control
  • CUAS
  • Counter-drone
  • counter-uas

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