Graph Neural Network-Based Scheduling for Multi-UAV-Enabled Communications in D2D Networks
Pei Li, Lingyi Wang, Wei Wu, Fuhui Zhou, Baoyun Wang, Qihui Wu

TL;DR
This paper introduces a graph neural network approach to optimize power control and UAV positioning in D2D networks, significantly improving transmission rates while reducing computational complexity.
Contribution
The paper presents a novel GNN-based method for joint power and position optimization in UAV-enabled D2D networks, outperforming traditional optimization techniques.
Findings
GNN-based approach achieves higher transmission rates.
Method reduces computational complexity.
Performance surpasses traditional optimization methods.
Abstract
In this paper, we jointly design the power control and position dispatch for Multi-unmanned aerial vehicle (UAV)-enabled communication in device-to-device (D2D) networks. Our objective is to maximize the total transmission rate of downlink users (DUs). Meanwhile, the quality of service (QoS) of all D2D users must be satisfied. We comprehensively considered the interference among D2D communications and downlink transmissions. The original problem is strongly non-convex, which requires high computational complexity for traditional optimization methods. And to make matters worse, the results are not necessarily globally optimal. In this paper, we propose a novel graph neural networks (GNN) based approach that can map the considered system into a specific graph structure and achieve the optimal solution in a low complexity manner. Particularly, we first construct a GNN-based model for the…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · UAV Applications and Optimization · Advanced MIMO Systems Optimization
Methodstravel james
