Deterioration Causes Evaluation of Third Generation Cellular LTE Services for Moving Unmanned Terrestrial and Aerial Systems

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Deniss Brodņevs, Aleksandrs Kutins
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引用次数: 4

Abstract

Abstract Well-deployed cellular networks offer a cheap wireless solution for the control channel deployment of Remote-Control Vehicles (RCV) and Unmanned Aerial Vehicles (UAV). However, a cellular data transfer service performance is affected by a different kind of User Equipment (UE) mobility. Operating conditions of UAV imply working at different altitudes, variable velocities with accelerations/decelerations and rapidly changed antennas angular position, which lead the wireless signal to be prone to negative effects. Available field measurement studies are not sufficient to provide excessive information on degradation problem causes for UEs moving along a complex trajectory. This paper presents an evaluation of the service quality of live operational 3G and LTE networks for both ground moving and flying UE. It has been found that antennas angular position variations in 3D (for example, during UAV manoeuvers) increase data transfer latency and jitter. Moreover, this effect in conjunction with higher interference at high altitudes may partially or fully block the data transfer service. This paper has been prepared to draw attention to the problem that makes the cellular data transfer service unusable for highly-manoeuvrable UAVs.
移动无人地面和空中系统的第三代蜂窝LTE服务恶化原因评估
部署良好的蜂窝网络为遥控车辆(RCV)和无人机(UAV)的控制通道部署提供了一种廉价的无线解决方案。然而,蜂窝数据传输业务的性能受到不同类型的用户设备移动性的影响。无人机在不同高度、变速加减速、天线角度位置快速变化等工况下工作,导致无线信号容易受到负面影响。现有的现场测量研究不足以提供关于ue沿复杂轨迹移动的退化问题原因的过多信息。本文对地面移动终端和飞行终端的实时运营3G和LTE网络的服务质量进行了评估。已经发现,天线角位置变化在3D(例如,在无人机操纵期间)增加数据传输延迟和抖动。此外,这种影响与高海拔地区较高的干扰相结合,可能部分或完全阻断数据传输服务。本文旨在引起人们对高机动性无人机蜂窝数据传输服务不可用问题的关注。
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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来源期刊
Electrical Control and Communication Engineering
Electrical Control and Communication Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
14.30%
发文量
0
审稿时长
12 weeks
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