定向天线增强空中三维网格网络的连通性

Shenghong Qin, Laixian Peng, Renhui Xu, Bili Wang
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引用次数: 1

摘要

本文研究了一种无人机空中三维网格网络(A3DMN)。无人机在A3DMN中的空间分布对相互干扰和连通性的评估起着至关重要的作用。本文分析了在无信道争用和传输功率控制的干扰条件下,天线方向性对网络连通性的影响。我们在泊松点过程(PPP)和GPP之间引入了一个中间类ß-Ginibre点过程(ß-GPP),作为无人机表现排斥时A3DMN的模型。利用随机几何工具导出了连接概率和网络覆盖半径的封闭表达式。仿真结果表明,推导的理论表达式准确地反映了天线指向性对A3DMN性能的影响。结果表明,发射机天线的方向性和发射机位置分布的规律性有助于提高网络的连通性。
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Enhanced Connectivity of Aerial 3D Mesh Network with Directional Antennas
This paper considers an Aerial 3D Mesh Network (A3DMN) with unmanned aerial vehicles (UAVs). The spatial distribution of UAVs in A3DMN plays a crucial role in evaluating mutual interference and connectivity performance. This paper analyzes how antenna directionality affects network connectivity under interference constraints without any channel contention or transmission power control. We introduce an intermediate class ß-Ginibre Point Processes (ß-GPP) between the Poisson point process (PPP) and the GPP as a model for the A3DMN when UAVs exhibit repulsion. The closed-form expressions for connection probability and network coverage radius are derived by stochastic-geometry tools. Simulation results show that the derived theoretical expressions accurately reflect the influence of antenna directivity on the performance of the A3DMN. The results indicate that the directionality of transmitter antennas and the regularity of transmitter location distribution help to improve network connectivity.
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