Leader-follower based Coalition Formation in Large-scale UAV Networks, A Quantum Evolutionary Approach
Sajad Mousavi, Fatemeh Afghah, Jonathan D. Ashdown, Kurt Turck

TL;DR
This paper introduces a quantum evolutionary algorithm for decentralized coalition formation among UAVs, optimizing resource use, reliability, and trustworthiness in large-scale environments, outperforming existing methods.
Contribution
It proposes a novel leader-follower inspired quantum evolutionary algorithm for multi-objective coalition formation in UAV networks, addressing computational complexity and multiple optimization goals.
Findings
The proposed algorithm outperforms merge-and-split and NSGA-II algorithms.
It effectively balances resource minimization, task completion, and trust segregation.
Simulation results demonstrate significant performance improvements.
Abstract
The problem of decentralized multiple Point of Interests (PoIs) detection and associated task completion in an unknown environment with multiple resource-constrained and self-interested Unmanned Aerial Vehicles (UAVs) is studied. The UAVs form several coalitions to efficiently complete the compound tasks which are impossible to be performed individually. The objectives of such coalition formation are to firstly minimize resource consumption in completing the encountered tasks on time, secondly to enhance the reliability of the coalitions, and lastly in segregating the most trusted UAVs amid the self interested of them. As many previous publications have merely focused on minimizing costs, this study considers a multi-objective optimization coalition formation problem that considers the three aforementioned objectives. In doing so, a leader-follower- inspired coalition formation…
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