Modeling and simulation of dual-battery FANET system using MADRL for energy optimization
A. Sophia Mary, T. S. Pradeep Kumar

TL;DR
This paper introduces a MADRL-based system to optimize energy use in UAV networks with dual batteries, improving mission duration and communication stability.
Contribution
A novel MADRL framework using dual-battery systems to optimize energy consumption in FANETs for extended UAV operations.
Findings
MADRL significantly reduces energy wastage in UAV communication and operations.
Dual-battery system extends UAV battery life during extended missions.
Network connectivity is enhanced through intelligent energy management.
Abstract
Uncrewed Aerial Vehicles (UAVs), or drones, are revolutionizing applications such as surveillance, search and rescue (SAR), precision agriculture, and disaster response. In these applications, Flying Ad-Hoc Networks (FANETs)—dynamic networks of interconnected UAVs—are essential for enabling rapid and adaptive deployments. However, the limited battery life of UAVs remains a critical challenge, particularly in extended missions like SAR, where operational longevity and reliable performance are paramount. This paper addresses two key challenges in FANET-based UAV operations: optimizing energy consumption and ensuring stable communication links. We propose a novel strategy that models energy-efficient UAV behavior by focusing on the three primary drivers of power consumption: flight dynamics, payload operations, and continuous wireless communication, which collectively account for 80–85% of…
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Taxonomy
TopicsUAV Applications and Optimization · Distributed Control Multi-Agent Systems · IoT and Edge/Fog Computing
