基于超宽带信号的灭火机器人人的存在检测

A. Bandala, E. Sybingco, Jose Martin Z. Maningo, E. Dadios, Gann Isaac Isidro, Rocez Deanne Jurilla, Chia-Yu Lai
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引用次数: 2

摘要

火灾事件经常导致相关的死亡、伤害以及建筑物和财产的损失,特别是每年发生在家庭中的火灾。在这项研究中,研究人员提出了一种四轮灭火机器人,即使发生火灾,它也能探测到该地区的人类存在。本研究中使用多个传感器,通过Arduino和树莓派的集成来检测附近的火焰、烟雾、温度和湿度以及障碍物。该机器人由用户通过Wi-Fi通过研究人员用Python创建的图形用户界面远程控制,以便于监控数据和控制。机器人上还安装了一个摄像头,用于监视。机器人的人体检测系统采用超宽带雷达(UWB),利用X4M300存在传感器,根据呼吸运动检测人体存在。进行了初步测试和四次实验,以测试雷达传感器与现有人类检测方法的能力。研究人员在人体检测系统测试中获得了97.29%的准确率,证明了超宽带雷达传感器的实现是成功的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Human Presence Detection using Ultra Wide Band Signal for Fire Extinguishing Robot
Fire incidents often result to associated deaths, injuries, and losses occurring structures and properties, particularly in homes every year. In this study, the researchers proposed a 4-wheeled fire extinguishing robot with the ability to detect human presence in the area even when there is fire. Multiple sensors are utilized in this study to detect nearby flame, smoke, temperature and humidity, and obstacles through integration with Arduino and Raspberry Pi. The proposed robot is remotely controlled by the user over Wi-Fi through the graphical user interface created by the researchers in Python for easy monitoring of data and control. A camera is also mounted to the robot for surveillance purposes. The human detection system of the robot is implemented through using ultra-wide band radar (UWB) by utilizing the X4M300 presence sensor, which could detect human presence based on their respiration movement. Initial testing and four experiments were conducted to test the radar sensor's capabilities compared to the existing methods of human detection. The researchers yielded an accuracy of 97.29% in the testing of human detection system, proving that the implementation of UWB radar sensor is successful.
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