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Résumé

Indoor micro-aerial vehicles (MAVs) are increasingly considered for tasks that bring them in close proximity to people, yet practitioners lack a practical way to tune motion limits to measured impact risk. We present an end-to-end, open toolchain that turns benchtop impact tests into deployable safety governors for drones. First, we detail a compact, replicable impact rig and protocol that captures force-time profiles across drone classes and contact surfaces. Second, we provide data-driven fits that map pre-impact speed to impulse and contact duration, enabling direct computation of speed bounds for a target force limit. Third, we release scripts and a ROS2 node that enforce these bounds online and log compliance, with hooks for facility-specific policies. We target indoor MAV platforms with protective cages, focusing on bounding blunt contact forces of the airframe rather than propeller-strike hazards. We validate runtime enforcement in a closed-loop PX4-SITL/Gazebo setup (rotor-on dynamics), while physical rotor-on impact testing is left for future work. The contribution is a practical bridge: from measured impacts to runtime limits, with sharable datasets, code, and a repeatable process that teams can adopt to certify indoor MAV operations near humans.

langue originaleAnglais
titre2026 International Conference on Unmanned Aircraft Systems, ICUAS 2026
EditeurInstitute of Electrical and Electronics Engineers Inc.
Pages1363-1370
Nombre de pages8
ISBN (Electronique)9798331593162
Les DOIs
étatPublié - 2026
Evénement2026 International Conference on Unmanned Aircraft Systems, ICUAS 2026 - Corfu, Grèce
Durée: 15 juin 202618 juin 2026

Série de publications

Nom2026 International Conference on Unmanned Aircraft Systems, ICUAS 2026

Conférence

Conférence2026 International Conference on Unmanned Aircraft Systems, ICUAS 2026
Pays/TerritoireGrèce
La villeCorfu
période15/06/2618/06/26

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