Joint 3-D Positioning and Power Allocation for UAV Relay Aided by Geographic Information
Pengfei Yi, Liang Zhu, Lipeng Zhu, Zhenyu Xiao, Zhu Han, Xiang-Gen Xia

TL;DR
This paper proposes a joint 3-D positioning and power allocation method for UAV relays using geographic information to overcome blockage issues, significantly improving communication capacity in UAV-assisted networks.
Contribution
It introduces a novel optimization framework that jointly optimizes UAV 3-D position and power allocation considering geographic blockage effects.
Findings
Outperforms benchmark schemes in simulation
Achieves near-upper-bound performance
Effectively mitigates blockage with geographic info
Abstract
In this paper, we study to employ geographic information to address the blockage problem of air-to-ground links between UAV and terrestrial nodes. In particular, a UAV relay is deployed to establish communication links from a ground base station to multiple ground users. To improve communication capacity, we first model the blockage effect caused by buildings according to the three-dimensional (3-D) geographic information. Then, an optimization problem is formulated to maximize the minimum capacity among users by jointly optimizing the 3-D position and power allocation of the UAV relay, under the constraints of link capacity, maximum transmit power, and blockage. To solve this complex non-convex problem, a two-loop optimization framework is developed based on Lagrangian relaxation. The outer-loop aims to obtain proper Lagrangian multipliers to ensure the solution of the Lagrangian…
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Taxonomy
TopicsUAV Applications and Optimization · Advanced Wireless Communication Technologies · Cooperative Communication and Network Coding
