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A Novel Joint DRL-Based Utility Optimization for UAV Data Services

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arxiv 2406.10664 v1 pith:WLNNHX3R submitted 2024-06-15 cs.NI eess.SP

A Novel Joint DRL-Based Utility Optimization for UAV Data Services

classification cs.NI eess.SP
keywords powerusersallocationbandwidthdeepfadingjointresource
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this paper, we propose a novel joint deep reinforcement learning (DRL)-based solution to optimize the utility of an uncrewed aerial vehicle (UAV)-assisted communication network. To maximize the number of users served within the constraints of the UAV's limited bandwidth and power resources, we employ deep Q-Networks (DQN) and deep deterministic policy gradient (DDPG) algorithms for optimal resource allocation to ground users with heterogeneous data rate demands. The DQN algorithm dynamically allocates multiple bandwidth resource blocks to different users based on current demand and available resource states. Simultaneously, the DDPG algorithm manages power allocation, continuously adjusting power levels to adapt to varying distances and fading conditions, including Rayleigh fading for non-line-of-sight (NLoS) links and Rician fading for line-of-sight (LoS) links. Our joint DRL-based solution demonstrates an increase of up to 41% in the number of users served compared to scenarios with equal bandwidth and power allocation.

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