Research on a Vehicle-Mounted Emergency Communication System Using BeiDou Regional Short Message Communication (RSMC) for Firefighting Operations in Forest Areas without a Public Network

Author:

Xu Can1,Sun Shufa2,Zhou Yuan1,Ding Zian2

Affiliation:

1. College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040, China

2. School of Civil Engineering and Transportation, Northeast Forestry University, Harbin 150040, China

Abstract

The low coverage of public networks in pristine forest areas prevents on-site firefighters from communicating directly with remote command centers during forest fires, reducing firefighting efficiency. In this study, we designed a vehicle-mounted emergency communication system Using BeiDou RSMC (Regional Short Message Communication) for firefighting operations in forest areas without a public network to establish a satellite communication network and Zigbee self-organizing network technology to establish a local self-organizing network. Beidou RSMC is a satellite communication service developed and operated independently by China, and its signals now cover the entire globe. The combination of these two components ensures emergency communication in the event of a fire in a forest area without public network coverage. The performance of the system was tested by simulating a fire, and it was able to establish a reliable communication link between the firefighters on the scene and the remote command center in the absence of a public network. The proposed system solves the emergency communication problem that arises when a fire occurs in a forest area without a public network, enabling the remote command center to monitor fire information and dispatch various resources in real time, thereby improving firefighting efficiency and reducing casualties.

Funder

National Key Research and Development Program of China

Publisher

MDPI AG

Reference57 articles.

1. A Comparative Analysis of the Characteristics of Active Fires in the Boreal Forests of Eurasia and North America Based on Satellite Data;Sitnov;Izv. Atmos. Ocean. Phys.,2018

2. Fire-induced loss of the world’s most biodiverse forests in Latin America;Armenteras;Sci. Adv.,2021

3. Ecological impacts of forest fire on composition and structure of tropical deciduous forests of central India;Kumar;Phys. Chem. Earth,2022

4. Construction and Application of Emergency Command and Communication System for Forest Fire Fighting;Chen;China Emerg. Rescue,2022

5. Research on the Ability of Forest Fire Bridge to Cope with Large Fire Disasters;Xu;J. Wildland Fire Sci.,2023

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