Medi-Fly-DR: A Communication-Enabled UAV Micro-Infrastructure for Disaster-Resilient Healthcare Logistics
Date
2026-05-21
Journal Title
Journal ISSN
Volume Title
Publisher
Sri Lanka Institute of Information Technology
Abstract
Disasters disrupt healthcare delivery by damaging transport routes and weakening the communication infrastructure required to coordinate time-critical medical logistics. This paper presents Medi-Fly-DR, a safety-aware, IoT-enabled UAV framework designed as a communication-integrated microinfrastructure for disaster-resilient healthcare logistics. Unlike conventional UAV delivery systems that primarily focus on physical transport, Medi-Fly-DR integrates autonomous medical delivery with real-time telemetry, mission-state visibility, secure data exchange, payload monitoring, dynamic geofencing, and safety-gated mission orchestration within a unified cyberphysical architecture. The framework is validated through controlled field trials using an industry-grade multirotor UAV over 1–2 km routes, supported by route-matched road baselines and fault-injection experiments. Experimental results demonstrate an approximately 80% reduction in delivery time compared with road transport, a 96% mission success rate, and safe recovery under low-battery, communication-loss, and high-wind conditions. Continuous telemetry enables real-time monitoring of mission progress, payload status, and system health, supporting
traceable, coordinated, and fault-aware healthcare response. These findings show that Medi-Fly-DR functions not merely as a UAV delivery mechanism, but as an information-centric aerial infrastructure for maintaining healthcare continuity in disaster affected and resource-constrained environments.
Description
Keywords
Cyber-physical systems, Disaster-resilient healthcare, Internet of Things, Medical drone delivery, UAV communication
