
		<paper>
			<loc>https://jjcit.org/paper/289</loc>
			<title>FANET DATASET: UAV COMMUNICATION SCENARIOS IN NS-3.40</title>
			<doi>10.5455/jjcit.71-1769200515</doi>
			<authors>Ali Moussaoui,Hicham Lakhlef</authors>
			<keywords>FANET,UAV,Dataset,QoS,NS-3,OLSR,Ad hoc networks</keywords>
			<views>17</views>
			<downloads>7</downloads>
			<received_date>24-Jan.-2026</received_date>
			<revised_date>  4-Apr.-2026</revised_date>
			<accepted_date>  26-Apr.-2026</accepted_date>
			<abstract>Flying Ad hoc Networks (FANETs) enable communication among unmanned aerial vehicles (UAVs) in highly 
dynamic and infrastructure-less environments. However, high mobility; limited onboard energy and rapidly 
changing network topology make reliable communication and Quality of Service (QoS) assurance particularly 
challenging. This paper presents a publicly available FANET dataset generated through detailed simulations using 
NS-3.40. The dataset consists of eight communication scenarios that systematically vary node density, mobility 
speed, transmission range, energy levels, traffic type and communication architecture. For each scenario, the 
dataset provides packet-level traces, UAV mobility and energy states, QoS metrics and routing information derived 
from the OLSR protocol. The dataset is designed to support performance analysis, protocol benchmarking and the 
development of energy-aware and AI-driven routing strategies for FANETs. By releasing this dataset on Zenodo, 
we aim to facilitate reproducible experimentation and provide a practical reference for future research on UAV 
communication networks.</abstract>
		</paper>


