Multi-Beam UAV Communication in Cellular Uplink: Cooperative Interference Cancellation and Sum-Rate Maximization
Liang Liu, Shuowen Zhang, and Rui Zhang

TL;DR
This paper proposes a cooperative interference cancellation strategy for multi-beam UAV uplink communication in cellular networks, maximizing sum-rate while managing interference with terrestrial users.
Contribution
It introduces a novel multi-beam UAV transmission scheme with interference cancellation, optimizing sum-rate and interference management in high SNR regimes.
Findings
Maximizes degrees-of-freedom for UAV uplink in high SNR
Achieves interference-free communication at occupied GBSs
Enhances sum-rate performance under interference constraints
Abstract
Integrating unmanned aerial vehicles (UAVs) into the cellular network as new aerial users is a promising solution to meet their ever-increasing communication demands in a plethora of applications. Due to the high UAV altitude, the channels between UAVs and the ground base stations (GBSs) are dominated by the strong line-of-sight (LoS) links, thus severe interference may be generated to/from the GBSs in the uplink/downlink, which renders the interference management with coexisting terrestrial and aerial users a more challenging problem to solve. In this paper, we study the uplink communication from a multi-antenna UAV to a set of GBSs in its signal coverage region. Among these GBSs, we denote available GBSs as the ones that do not serve any terrestrial users at the assigned resource block (RB) of the UAV, and occupied GBSs as the rest that are serving their respectively associated…
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Taxonomy
TopicsUAV Applications and Optimization · Advanced MIMO Systems Optimization · Advanced Wireless Communication Technologies
