Design and Implementation of LoRa-Based Forest Fire Monitoring System

Yosi Apriani, Wiwin A. Oktaviani, Ian Mochamad Sofian
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引用次数: 9

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.
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基于lora的森林火灾监测系统的设计与实现
森林火灾是地球上最大的灾难之一。在监测技术的帮助下,人们尝试检测灾难事件。然而,问题是传感器对探测火灾的反应较差。此外,在整个森林范围内发送火灾事件的信息无法使用现有的通信平台。因此,我们设计了一个基于LoRa的森林火灾监测系统。这项技术是基于无线的,可以在森林中传输数据。为了检测火灾的存在,Arduino Uno被用作微控制器,调节来自AMG8833传感器和GPS Ubox 6M的输入。实验表明,当捕获距离在3 ~ 10米之间变化时,AMG8833传感器对火灾的探测更加敏感。在该距离范围内,对传感器节点进行测试时,检测到的热点为19.25℃~ 122.5℃。本研究开发的监测系统表明,传感器节点和网关之间的通信距离可达500米,信号质量为-134 dBm。这种通信能力的最佳LoRa配置模式是带宽为250,码率为4/5,扩展因子为10。森林火灾是地球上最大的灾难之一。在监测技术的帮助下,人们尝试检测灾难事件。然而,问题是传感器对探测火灾的反应较差。此外,在整个森林范围内发送火灾事件的信息无法使用现有的通信平台。因此,我们设计了一个基于LoRa的森林火灾监测系统。这项技术是基于无线的,可以在森林中传输数据。为了检测火灾的存在,Arduino Uno被用作微控制器,调节来自AMG8833传感器和GPS Ubox 6M的输入。实验表明,当捕获距离在3 ~ 10米之间变化时,AMG8833传感器对火灾的探测更加敏感。在该距离范围内,对传感器节点进行测试时,检测到的热点为19.25℃~ 122.5℃。本研究开发的监测系统表明,传感器节点和网关之间的通信距离可达500米,信号质量为-134 dBm。这种通信能力的最佳LoRa配置模式是带宽为250,码率为4/5,扩展因子为10。
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