利用 LPWAN 技术为基础设施有限的环境中的紧急情况组织备用通信信道

Q3 Engineering
Yurii Lykov, Anatoliy Oleynikov, Hanna Lykova, Stepan Savenko, Sergey Makovetskyi
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引用次数: 0

摘要

摘要 本文阐明了在蜂窝和卫星通信系统访问受限的紧急情况下建立备用通信渠道的重要性。研究的目的是证明 LoRaWAN 技术的使用是建立可靠的后备通信设施的基础。我们提出了一个设备框图,并以此为例对设备的自主时间进行建模。结果表明,根据不同的运行模式,自主时间从 150 天到 900 天不等。为了估算设备的无线电可及区域,使用各种无线电波传播模型对最大传输范围进行了建模。研究结果表明,基于 LoRaWAN 协议开发的应急通信系统是有效的,在某些条件下优于其他无线通信技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Organization of Backup Communication Channels for Emergencies in Environments with Limited Infrastructure Using LPWAN Technology

Organization of Backup Communication Channels for Emergencies in Environments with Limited Infrastructure Using LPWAN Technology

Abstract

This paper elucidates the importance of creating backup communication channels in emergencies when access to cellular and satellite communication systems can be limited. The purpose of the study is to substantiate the use of LoRaWAN technology as a basis for building reliable backup communication facilities. A block diagram of the device has been proposed, which is used as an example for modeling the autonomy time of the device. It is shown that, depending on the mode of operation, this time ranges from 150 to 900 days. To estimate the radio accessibility zone of the device, the maximum transmission range was modeled using various models of radio wave propagation. The results of the investigations have shown that the developed emergency communication system based on the LoRaWAN protocol is effective and superior to other wireless communication technologies under certain conditions.

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来源期刊
Radioelectronics and Communications Systems
Radioelectronics and Communications Systems Engineering-Electrical and Electronic Engineering
CiteScore
2.10
自引率
0.00%
发文量
9
期刊介绍: Radioelectronics and Communications Systems  covers urgent theoretical problems of radio-engineering; results of research efforts, leading experience, which determines directions and development of scientific research in radio engineering and radio electronics; publishes materials of scientific conferences and meetings; information on scientific work in higher educational institutions; newsreel and bibliographic materials. Journal publishes articles in the following sections:Antenna-feeding and microwave devices;Vacuum and gas-discharge devices;Solid-state electronics and integral circuit engineering;Optical radar, communication and information processing systems;Use of computers for research and design of radio-electronic devices and systems;Quantum electronic devices;Design of radio-electronic devices;Radar and radio navigation;Radio engineering devices and systems;Radio engineering theory;Medical radioelectronics.
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