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移动网络性能和基于 LTE 的无人机的技术可行性。

Mobile Network Performance and Technical Feasibility of LTE-Powered Unmanned Aerial Vehicle.

机构信息

Department of Electrical, Electronics and Systems Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.

Faculty of Information Science and Technology, Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.

出版信息

Sensors (Basel). 2021 Apr 18;21(8):2848. doi: 10.3390/s21082848.

Abstract

Conventional and license-free radio-controlled drone activities are limited to a line-of-sight (LoS) operational range. One of the alternatives to operate the drones beyond the visual line-of-sight (BVLoS) range is replacing the drone wireless communications system from the conventional industrial, scientific, and medical (ISM) radio band to a licensed cellular-connected system. The Long Term Evolution (LTE) technology that has been established for the terrestrial area allows command-and-control and payload communications between drone and ground station in real-time. However, with increasing height above the ground, the radio environment changes, and utilizing terrestrial cellular networks for drone communications may face new challenges. In this regard, this paper aims to develop an LTE-based control system prototype for low altitude small drones and investigate the feasibility and performance of drone cellular connectivity at different altitudes with measuring parameters such as latency, handover, and signal strength. The measurement results have shown that by increasing flight height from ground to 170 m the received signal power and the signal quality levels were reduced by 20 dBm and 10 dB respectively, the downlink data rate decreased to 70%, and latency increased up to 94 ms. It is concluded that although the existing LTE network can provide a minimum requirement for drone cellular connectivity, further improvements are still needed to enhance aerial coverage, eliminate interference, and reduce network latency.

摘要

常规的和免授权的无线电遥控无人机活动仅限于视距(LoS)操作范围。在视距范围之外操作无人机的一种替代方法是将无人机的无线通信系统从传统的工业、科学和医疗(ISM)无线电频段替换为授权的蜂窝连接系统。已经为地面区域建立的长期演进(LTE)技术允许无人机和地面站之间进行实时的指挥和控制以及有效载荷通信。然而,随着离地面高度的增加,无线电环境发生变化,利用地面蜂窝网络进行无人机通信可能会面临新的挑战。在这方面,本文旨在为低空小型无人机开发基于 LTE 的控制系统原型,并研究不同高度下无人机蜂窝连接的可行性和性能,测量参数包括延迟、切换和信号强度。测量结果表明,将飞行高度从地面增加到 170 米,接收信号功率和信号质量水平分别降低了 20dBm 和 10dB,下行数据速率降低到 70%,延迟增加到 94ms。结论是,尽管现有的 LTE 网络可以为无人机的蜂窝连接提供最低要求,但仍需要进一步改进,以增强空中覆盖范围、消除干扰和降低网络延迟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d20/8073316/449306bb13a4/sensors-21-02848-g001.jpg

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