Preamble Design for UAV Communications Over Cellular Networks

Unmanned aerial vehicle (UAV) communications over cellular networks are currently gaining increased interest because it can enable real-time control of UAVs and wide-area coverage. We discuss various challenges for future UAV cellular networks, where cellular networks with down-tilted antennas optim...

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Main Authors: Su Hyuk Moon, Chang Hwan Park, Yong Soo Cho
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8742552/
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spelling doaj-709007b0a259449b97c986ed3c01253c2021-03-30T00:18:36ZengIEEEIEEE Access2169-35362019-01-017820158202610.1109/ACCESS.2019.29239908742552Preamble Design for UAV Communications Over Cellular NetworksSu Hyuk Moon0Chang Hwan Park1Yong Soo Cho2https://orcid.org/0000-0001-7685-9434Department of Electrical and Electronics Engineering, Chung-Ang University, Seoul, South KoreaLG Electronics, Seoul, South KoreaDepartment of Electrical and Electronics Engineering, Chung-Ang University, Seoul, South KoreaUnmanned aerial vehicle (UAV) communications over cellular networks are currently gaining increased interest because it can enable real-time control of UAVs and wide-area coverage. We discuss various challenges for future UAV cellular networks, where cellular networks with down-tilted antennas optimized for terrestrial users can extend terrestrial cellular services to aerial users. To overcome challenges such as large channel variation and UAV power consumption in UAV cellular networks, we propose a technique of preamble design for these networks using scalable sequences. Specifically, three types of scalable sequences are proposed for efficient use of battery power in UAVs, namely, maximum-length scalable sequence, Zadoff-Chu scalable sequence, and linear frequency modulated (LFM) scalable sequence. The properties of these scalable sequences are analyzed and compared through simulations in different channel environments.https://ieeexplore.ieee.org/document/8742552/Cellular networkpreamble designscalable sequenceunmanned aerial vehicle
collection DOAJ
language English
format Article
sources DOAJ
author Su Hyuk Moon
Chang Hwan Park
Yong Soo Cho
spellingShingle Su Hyuk Moon
Chang Hwan Park
Yong Soo Cho
Preamble Design for UAV Communications Over Cellular Networks
IEEE Access
Cellular network
preamble design
scalable sequence
unmanned aerial vehicle
author_facet Su Hyuk Moon
Chang Hwan Park
Yong Soo Cho
author_sort Su Hyuk Moon
title Preamble Design for UAV Communications Over Cellular Networks
title_short Preamble Design for UAV Communications Over Cellular Networks
title_full Preamble Design for UAV Communications Over Cellular Networks
title_fullStr Preamble Design for UAV Communications Over Cellular Networks
title_full_unstemmed Preamble Design for UAV Communications Over Cellular Networks
title_sort preamble design for uav communications over cellular networks
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description Unmanned aerial vehicle (UAV) communications over cellular networks are currently gaining increased interest because it can enable real-time control of UAVs and wide-area coverage. We discuss various challenges for future UAV cellular networks, where cellular networks with down-tilted antennas optimized for terrestrial users can extend terrestrial cellular services to aerial users. To overcome challenges such as large channel variation and UAV power consumption in UAV cellular networks, we propose a technique of preamble design for these networks using scalable sequences. Specifically, three types of scalable sequences are proposed for efficient use of battery power in UAVs, namely, maximum-length scalable sequence, Zadoff-Chu scalable sequence, and linear frequency modulated (LFM) scalable sequence. The properties of these scalable sequences are analyzed and compared through simulations in different channel environments.
topic Cellular network
preamble design
scalable sequence
unmanned aerial vehicle
url https://ieeexplore.ieee.org/document/8742552/
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