Towards Realistic Modelling of Drone‐based Cellular Network Coverage

M. Imran, Y. Sambo, Q. Abbasi
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引用次数: 0

Abstract

This chapter addresses the unmanned aerial vehicle (UAV) deployment problem by analyzing the trade‐offs between key system design parameters such as height, antenna beamwidth, and number of UAVs. By leveraging a more realistic model compared to prior studies on the topic, the analysis reveals several new insights and trade‐offs between the design parameters that remain unexplored in existing studies. An antenna pattern that approximates the actual antenna pattern accurately and realistically is required to reveal more insights in order to properly dimension and optimize UAV‐based networks. The chapter addresses this problem by using a 3GPP defined 3D parabolic antenna pattern whose gain is realistically dependent on not only beamwidth but also the three‐dimensional elevation angle. Equations for coverage probability and the probability density functions of received signal strength as a function of key UAV parameters are derived.
基于无人机的蜂窝网络覆盖的现实建模
本章通过分析关键系统设计参数(如高度、天线波束宽度和无人机数量)之间的权衡,解决了无人机(UAV)部署问题。与之前的研究相比,通过利用更现实的模型,该分析揭示了一些新的见解和现有研究中尚未探索的设计参数之间的权衡。需要一种准确而真实地接近实际天线方向图的天线方向图,以揭示更多的见解,以便适当地确定尺寸并优化基于无人机的网络。本章通过使用3GPP定义的3D抛物面天线图来解决这个问题,该天线图的增益实际上不仅取决于波束宽度,还取决于三维仰角。推导了覆盖概率方程和接收信号强度随无人机关键参数的概率密度函数。
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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