IoT Enabled Low Cost Air Quality Sensor

Tyrel Glass, Sharafat Ali, Baden Parr, J. Potgieter, F. Alam
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引用次数: 12

Abstract

Air pollution poses significant risks to environment and health. Air quality monitoring stations are often confined to a small number of locations due to the high cost of the monitoring equipment. They provide a low fidelity picture of the air quality in the city; local variations are overlooked. However, recent developments in low cost sensor technology and wireless communication systems like Internet of Things (IoT) provide an opportunity to use arrayed sensor networks to measure air quality, in real time, at a large number of locations. This paper reports the development of a novel low cost sensor node that utilizes cost-effective electrochemical sensors to measure Carbon Monoxide (CO) and Nitrogen Dioxide (NO2) concentrations and an infrared sensor to measure Particulate Matter (PM) levels. The node can be powered by either solar-recharged battery or mains supply. It is capable of long-range, low power communication over public or private LoRaWAN IoT network and short-range high data rate communication over Wi-Fi. The developed sensor nodes were co-located with an accurate reference CO sensor for field calibration. The low cost sensors’ data shows strong correlation with the data collected from the reference sensor. Offset and gain calibration further improves the quality of the sensor data.
支持物联网的低成本空气质量传感器
空气污染对环境和健康构成重大风险。由于监测设备成本高昂,空气质量监测站往往局限于少数地点。它们提供了城市空气质量的低保真度图像;当地的变化被忽视了。然而,低成本传感器技术和物联网(IoT)等无线通信系统的最新发展为使用阵列传感器网络在大量地点实时测量空气质量提供了机会。本文报道了一种新型低成本传感器节点的开发,该节点利用具有成本效益的电化学传感器来测量一氧化碳(CO)和二氧化氮(NO2)浓度,利用红外传感器来测量颗粒物(PM)水平。该节点可以由太阳能充电电池或电源供电。它能够通过公共或专用LoRaWAN物联网网络进行远程低功耗通信,并通过Wi-Fi进行短距离高数据速率通信。开发的传感器节点与精确的参考CO传感器共同定位,用于现场校准。低成本传感器的数据与参考传感器的数据具有很强的相关性。偏移和增益校准进一步提高了传感器数据的质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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