现代计算机2024,Vol.30Issue(9) :112-116.DOI:10.3969/j.issn.1007-1423.2024.09.022

基于RF共存的一氧化碳监测系统设计与研究

Design and research of carbon monoxide monitoring system based on RF coexistence

周玉博
现代计算机2024,Vol.30Issue(9) :112-116.DOI:10.3969/j.issn.1007-1423.2024.09.022

基于RF共存的一氧化碳监测系统设计与研究

Design and research of carbon monoxide monitoring system based on RF coexistence

周玉博1
扫码查看

作者信息

  • 1. 华北科技学院电子信息工程学院,廊坊 065201
  • 折叠

摘要

在工业生产过程中,会释放不同浓度的一氧化碳,一氧化碳报警器对现场环境进行24h不间断的监测,时刻保护着工作人员的人身安全.提出一种基于ESP32C3芯片和电化学一氧化碳传感器的Wi-Fi蓝牙共存的多点无线测温系统.该系统使用ESP32C3运行蓝牙从机作为一氧化碳传感器节点,同时运行蓝牙主机和Wi-Fi客户端充当温度汇聚节点,并利用阿里云物联网平台进行数据可视化.该监测系统经过测试,表现出运行稳定性、数据可靠性,以及实现了超低功耗的无线数据采集与监测功能.

Abstract

In the process of industrial production,different concentrations of carbon monoxide will be released,carbon monox-ide alarm on the scene environment for 24 hours uninterrupted monitoring,always protect the personal safety of staff.A multi-point wireless temperature measurement system based on Wi-Fi Bluetooth and ESP32C3 chip with electrochemical carbon monoxide sen-sor is proposed.The system uses the ESP32C3 to run a Bluetooth slave as a carbon monoxide sensor node,while running a Blue-tooth host and a Wi-Fi client as a temperature sink node,and leverages the Aricloud IoT platform for data visualization.After test-ing,the monitoring system shows the stability of operation and data reliability,and realizes the wireless data acquisition and moni-toring function of ultra-low power consumption.

关键词

蓝牙/Wi-Fi/一氧化碳传感器/超低功耗/物联网平台

Key words

bluetooth/Wi-Fi/carbon monoxide sensor/ultra-low power consumption/Internet of Things platform

引用本文复制引用

出版年

2024
现代计算机
中大控股

现代计算机

影响因子:0.292
ISSN:1007-1423
段落导航相关论文