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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 language | English |
|---|---|
| Title of host publication | Proceedings of the IFAC World Congress |
| Place of Publication | Busan, South Korea |
| Number of pages | 4 |
| Publication status | Published - 28 Aug 2026 |
Keywords
- Robotics
- Control
- CUAS
- Counter-drone
- counter-uas
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Dive into the research topics of 'Stability-Constrained Variable Autonomy Control for Counter-UAS Engagement under Time-Critical Conditions'. Together they form a unique fingerprint.Projects
- 2 Active
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ORIGAMI: DrOne swaRm navIgation in Gnss-degraded And non-perMissive envIronments
De cubber, G. (Promotor), Doroftei, L. (Promotor), Balao, J. (Researcher) & Depreytere, X. (Researcher)
1/11/25 → 31/10/29
Project: Research › EDF
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Courageous2: Building a common understanding of the effectiveness of counter-UAS solutions
Doroftei, L. (Promotor), Papy, A. (Researcher), Vandewal, M. (Researcher), Becquaert, M. (Researcher), De cubber, G. (Promotor) & Depreytere, X. (Researcher)
1/03/25 → 29/02/28
Project: Research › EU_Other
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