Optimized Area Coverage in Disaster Response Utilizing Autonomous UAV Swarm Formations

Fuente: arXiv
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Bibliographic Details
Main Authors: Papakostas, Lampis, Geladaris, Aristeidis, Mastrogeorgiou, Athanasios, Sharples, Jim, Hattenberger, Gautier, Chatzakos, Panagiotis, Polygerinos, Panagiotis
Format: Preprint
Published: 2025
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author Papakostas, Lampis
Geladaris, Aristeidis
Mastrogeorgiou, Athanasios
Sharples, Jim
Hattenberger, Gautier
Chatzakos, Panagiotis
Polygerinos, Panagiotis
author_facet Papakostas, Lampis
Geladaris, Aristeidis
Mastrogeorgiou, Athanasios
Sharples, Jim
Hattenberger, Gautier
Chatzakos, Panagiotis
Polygerinos, Panagiotis
contents This paper presents a UAV swarm system designed to assist first responders in disaster scenarios like wildfires. By distributing sensors across multiple agents, the system extends flight duration and enhances data availability, reducing the risk of mission failure due to collisions. To mitigate this risk further, we introduce an autonomous navigation framework that utilizes a local Euclidean Signed Distance Field (ESDF) map for obstacle avoidance while maintaining swarm formation with minimal path deviation. Additionally, we incorporate a Traveling Salesman Problem (TSP) variant to optimize area coverage, prioritizing Points of Interest (POIs) based on preassigned values derived from environmental behavior and critical infrastructure. The proposed system is validated through simulations with varying swarm sizes, demonstrating its ability to maximize coverage while ensuring collision avoidance between UAVs and obstacles.
format Preprint
id arxiv_https___arxiv_org_abs_2512_08028
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Optimized Area Coverage in Disaster Response Utilizing Autonomous UAV Swarm Formations
Papakostas, Lampis
Geladaris, Aristeidis
Mastrogeorgiou, Athanasios
Sharples, Jim
Hattenberger, Gautier
Chatzakos, Panagiotis
Polygerinos, Panagiotis
Robotics
This paper presents a UAV swarm system designed to assist first responders in disaster scenarios like wildfires. By distributing sensors across multiple agents, the system extends flight duration and enhances data availability, reducing the risk of mission failure due to collisions. To mitigate this risk further, we introduce an autonomous navigation framework that utilizes a local Euclidean Signed Distance Field (ESDF) map for obstacle avoidance while maintaining swarm formation with minimal path deviation. Additionally, we incorporate a Traveling Salesman Problem (TSP) variant to optimize area coverage, prioritizing Points of Interest (POIs) based on preassigned values derived from environmental behavior and critical infrastructure. The proposed system is validated through simulations with varying swarm sizes, demonstrating its ability to maximize coverage while ensuring collision avoidance between UAVs and obstacles.
title Optimized Area Coverage in Disaster Response Utilizing Autonomous UAV Swarm Formations
topic Robotics
url https://arxiv.org/abs/2512.08028