Towards 6G with Connected Sky: UAVs and Beyond

Fuente: arXiv
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Main Authors: Mozaffari, Mohammad, Lin, Xingqin, Hayes, Stephen
Format: Preprint
Published: 2021
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author Mozaffari, Mohammad
Lin, Xingqin
Hayes, Stephen
author_facet Mozaffari, Mohammad
Lin, Xingqin
Hayes, Stephen
contents The large-scale and ever-growing use of unmanned aerial vehicles (UAVs) in a wide range of applications is foreseen to be a major part of beyond 5G and 6G wireless networks in the next decade. The effective support of such massive deployment of UAVs requires offering reliable, secure, and cost-effective wireless connectivity. In this regard, cellular networks play essential roles in serving UAVs acting as flying user equipments. While the cellular networks provide promising connectivity solutions for UAVs, enabling robust UAV operations faces several challenges. In this paper, an overview of key barriers and design considerations of widespread commercial use of flying UAVs are presented along with their potential solutions. In addition, we discuss how cellular networks can support UAVs by relying on their advanced features, network intelligence, key enabling technologies for beyond 5G and 6G, and exploiting new tools from machine learning. Finally, we shed light on offering wireless services to high altitudes and the integration of non-terrestrial networks with terrestrial networks towards limitless connectivity in 6G.
format Preprint
id arxiv_https___arxiv_org_abs_2103_01143
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Towards 6G with Connected Sky: UAVs and Beyond
Mozaffari, Mohammad
Lin, Xingqin
Hayes, Stephen
Information Theory
The large-scale and ever-growing use of unmanned aerial vehicles (UAVs) in a wide range of applications is foreseen to be a major part of beyond 5G and 6G wireless networks in the next decade. The effective support of such massive deployment of UAVs requires offering reliable, secure, and cost-effective wireless connectivity. In this regard, cellular networks play essential roles in serving UAVs acting as flying user equipments. While the cellular networks provide promising connectivity solutions for UAVs, enabling robust UAV operations faces several challenges. In this paper, an overview of key barriers and design considerations of widespread commercial use of flying UAVs are presented along with their potential solutions. In addition, we discuss how cellular networks can support UAVs by relying on their advanced features, network intelligence, key enabling technologies for beyond 5G and 6G, and exploiting new tools from machine learning. Finally, we shed light on offering wireless services to high altitudes and the integration of non-terrestrial networks with terrestrial networks towards limitless connectivity in 6G.
title Towards 6G with Connected Sky: UAVs and Beyond
topic Information Theory
url https://arxiv.org/abs/2103.01143