Modeling and Coverage Analysis of Downlink UAV Networks with MmWave Communications

Wenqiang Yi, Yuanwei Liu, M. Elkashlan, A. Nallanathan
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引用次数: 13

Abstract

In order to satisfy the requirement of high throughput in most unmanned aerial vehicle (UAV) applications, the potential of integrating millimeter wave (mmWave) communications into UAV networks is explored in this paper. A tractable three-dimensional (3D) spatial model is proposed for evaluating the average downlink performance of UAV networks at mmWave bands, where the locations of UAVs and users are randomly distributed with the aid of a Poisson cluster process. Moreover, a typical 3D antenna model with the uniform planar array is deployed at all UAVs to examine the impact of both azimuth and elevation angles. Based on this framework and an ordered user selection scheme, closed-form approximation equations of coverage probabilities are derived. In a noise-limited scenario, an exact expression is provided, which theoretically demonstrates that the coverage performance can be enhanced by increasing the number of antenna elements. Regarding the altitude of UAVs, there exists an optimal height for maximizing the evaluated coverage probability. Numerical results illustrate that non-line-of-sight transmissions caused by obstacles have negligible effects on the considered system.
基于毫米波通信的无人机下行网络建模与覆盖分析
为了满足大多数无人机应用对高吞吐量的要求,本文探讨了将毫米波通信集成到无人机网络中的潜力。利用泊松聚类过程随机分布无人机和用户的位置,提出了一种可处理的三维空间模型,用于评估毫米波频段无人机网络的平均下行性能。此外,在所有无人机上部署了典型的均匀平面阵列三维天线模型,以研究方位角和仰角的影响。基于该框架和有序用户选择方案,导出了覆盖概率的封闭近似方程。在噪声受限的情况下,给出了精确表达式,从理论上证明了通过增加天线单元数可以提高覆盖性能。对于无人机的高度,存在一个使评估覆盖概率最大化的最优高度。数值结果表明,障碍物引起的非视距传输对系统的影响可以忽略不计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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