Analyzing And Improving The Performance Of A Particulate Matter Low Cost Air Quality Monitoring Device

Evangelos Bagkis,Theodosios Kassandros, Marinos Karteris, Apostolos Karteris,Kostas Karatzas

ATMOSPHERE(2021)

引用 13|浏览4
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摘要
Air quality (AQ) in urban areas is deteriorating, thus having negative effects on people's everyday lives. Official air quality monitoring stations provide the most reliable information, but do not always depict air pollution levels at scales reflecting human activities. They also have a high cost and therefore are limited in number. This issue can be addressed by deploying low cost AQ monitoring devices (LCAQMD), though their measurements are of far lower quality. In this paper we study the correlation of air pollution levels reported by such a device and by a reference station for particulate matter, ozone and nitrogen dioxide in Thessaloniki, Greece. On this basis, a corrective factor is modeled via seven machine learning algorithms in order to improve the quality of measurements for the LCAQMD against reference stations, thus leading to its on-field computational improvement. We show that our computational intelligence approach can improve the performance of such a device for PM10 under operational conditions.
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关键词
PM10, low cost air quality monitoring device, on-site calibration, self-organizing maps, long short-term memory neural networks, convolutional neural networks, multilayer perceptron, random forest, orthogonal polynomial expanded functional link neural networks
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