Design and Implementation of LoRa-Based Forest Fire Monitoring System

Author:

Apriani Yosi,Oktaviani Wiwin A.,Sofian Ian Mochamad

Abstract

One of the great disasters on earth is forest fires. Attempts to detect disaster events have been made with the help of monitoring technology. However, the problem is that the sensor is less responsive to detecting the presence of fire. Furthermore, sending information about fire incidents throughout the forest cannot use the existing communication platform. Therefore, we designed a forest fire monitoring system using LoRa. This technology is based on wireless which can transmit data across the forest. To detect the presence of fire, Arduino Uno is used as a microcontroller that regulates input from the AMG8833 sensor and GPS Ubox 6M. The experiment shows that the AMG8833 sensor is more sensitive in detecting the presence of fire as the catch range changes between 3 to 10 meters. In that distance range, hotspots were detected 19.25 oC to 122.5 oC when testing the sensor node is done. The monitoring system developed in this study demonstrated that sensor nodes and gateways could communicate up to 500 meters apart with a signal quality of -134 dBm. The best LoRa configuration mode for this communication capability is a Bandwidth of 250, a Code Rate of 4/5, and a Spread Factor of 10.One of the great disasters on earth is forest fires. Attempts to detect disaster events have been made with the help of monitoring technology. However, the problem is that the sensor is less responsive to detecting the presence of fire. Furthermore, sending information about fire incidents throughout the forest cannot use the existing communication platform. Therefore, we designed a forest fire monitoring system using LoRa. This technology is based on wireless which can transmit data across the forest. To detect the presence of fire, Arduino Uno is used as a microcontroller that regulates input from the AMG8833 sensor and GPS Ubox 6M. The experiment shows that the AMG8833 sensor is more sensitive in detecting the presence of fire as the catch range changes between 3 to 10 meters. In that distance range, hotspots were detected 19.25 oC to 122.5 oC when testing the sensor node is done. The monitoring system developed in this study demonstrated that sensor nodes and gateways could communicate up to 500 meters apart with a signal quality of -134 dBm. The best LoRa configuration mode for this communication capability is a Bandwidth of 250, a Code Rate of 4/5, and a Spread Factor of 10.

Publisher

Universitas Muhammadiyah Yogyakarta

Subject

Artificial Intelligence,Control and Systems Engineering

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Forest Fire Recognition Method Based on Modified Deep CNN Model;Forests;2024-01-05

2. Lora Communication Design and Performance Test (Case Study: Air Quality Monitoring System);2023 International Conference of Computer Science and Information Technology (ICOSNIKOM);2023-11-10

3. Comparative Analysis of Wireless Transmission Methods for Firefighting Communication in Challenging Indoor Environments;TENCON 2023 - 2023 IEEE Region 10 Conference (TENCON);2023-10-31

4. Enabling Concurrency for Non-orthogonal LoRa Channels;Proceedings of the 29th Annual International Conference on Mobile Computing and Networking;2023-10-02

5. Implementation of AES-256 Algorithm for Secure Data Transmission in LoRa-based Forest Fire Monitoring System;2023 IEEE International Conference on Cryptography, Informatics, and Cybersecurity (ICoCICs);2023-08-22

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