Power Allocation for Uplink Communications of Massive Cellular-Connected UAVs
Xuesong Cai, Istv\'an Z. Kov\'acs, Jeroen Wigard, Rafhael Amorim,, Fredrik Tufvesson, and Preben E. Mogensen

TL;DR
This paper proposes power allocation algorithms for uplink communications of massive cellular-connected UAVs, aiming to mitigate interference and enhance spectrum efficiency using successive convex approximation techniques.
Contribution
It introduces the first optimized power allocation methods specifically designed for interference management among large numbers of UAV-UEs in cellular networks.
Findings
Algorithms effectively improve uplink spectrum efficiency.
Performance gains are validated through extensive simulations.
Approach addresses unique UAV interference challenges.
Abstract
Cellular-connected unmanned aerial vehicle (UAV) has attracted a surge of research interest in both academia and industry. To support aerial user equipment (UEs) in the existing cellular networks, one promising approach is to assign a portion of the system bandwidth exclusively to the UAV-UEs. This is especially favorable for use cases where a large number of UAV-UEs are exploited, e.g., for package delivery close to a warehouse. Although the nearly line-of-sight (LoS) channels can result in higher powers received, UAVs can in turn cause severe interference to each other in the same frequency band. In this contribution, we focus on the uplink communications of massive cellular-connected UAVs. Different power allocation algorithms are proposed to either maximize the minimal spectrum efficiency (SE) or maximize the overall SE to cope with severe interference based on the successive convex…
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Taxonomy
TopicsUAV Applications and Optimization · Advanced MIMO Systems Optimization · Advanced Wireless Communication Technologies
