利用物联网检测和通知野火的超低功耗架构

Tareq Khan
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引用次数: 2

摘要

野火造成人员伤亡,毁坏住宅,污染空气,并造成经济损失。本文开发了一种基于低功耗物联网(IoT)的传感器网络,该网络可以自动检测森林中的火灾,并通过智能手机实时通知将位置发送到中央监测站。这一行动有助于及早发现火灾,消防员可以立即得到通知,从而减少火灾的蔓延和造成的危害。该系统通过烟雾和温度的突然升高来探测火灾。该系统还记录了森林不同区域的温度、湿度、二氧化碳、降雨、光照和风速。传感器节点使用远程无线发射器将数据传输到集线器,然后集线器使用蜂窝互联网将数据发送到中央监测站。传感器节点和集线器采用超低功耗硬件和软件架构设计,分别消耗的电流值仅为0.37 mA和1.4 mA,因此可以全年由太阳能电池板供电。中央服务器和智能手机应用程序包含地图,如果发生火灾,野火位置会被标记出来。在本研究中,已成功开发并测试了该系统的原型。
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Ultra-Low-Power Architecture for the Detection and Notification of Wildfires Using the Internet of Things
Wildfires kill and injure people, destroy residences, pollute the air, and cause economic loss. In this paper, a low-power Internet of Things (IoT)-based sensor network is developed, which automatically detects fires in forests and sends the location to a central monitoring station with smartphone notifications in a real-time setting. This action helps in the early detection of a fire and firefighters can be notified immediately—thus the spread of the fire and the harm caused by it can be reduced. The proposed system detects fires from the presence of smoke and a sudden increase in temperature. The system also logs the temperature, humidity, carbon dioxide, rain, light, and wind speed in different areas of the forest. The sensor nodes transmit the data to a hub using a long-range wireless transmitter and the hub then sends the data to the central monitoring station using the cellular Internet. The sensor nodes and hub are designed with ultra-low-power hardware and software architecture, consuming current values of only 0.37 and 1.4 mA, respectively, so that they can be powered by solar panels throughout the year. The central server and smartphone app contain maps, and the wildfire locations are marked in the case of a fire. In the present study, a prototype of the proposed system is successfully developed and tested.
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