Identification of the Safe Variation Limits for the Optimization of the Measurements in Low-Cost Electrochemical Air Quality Sensors

I. Christakis, Elena Sarri, O. Tsakiridis, Ilias Stavrakas
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Abstract

Nowadays, the study of air quality has become an increasingly prominent field of research, particularly in large urban centers, given its significant impact on human health. In many countries, government departments and research centers use official high-cost scientific instruments to monitor air quality in their regions. Meanwhile, concerned citizens interested in studying the air quality of their local areas often employ low-cost air quality sensors for monitoring purposes. The optimization and evaluation of low-cost sensors have been a field of research by many research groups. This paper presents an extensive study to identify the safe percentage change limits that low-cost electrochemical air quality sensors can have, in order to optimize their measurements. For this work, three low-cost air quality monitoring stations were used, which include an electrochemical sensor for nitrogen dioxide (NO2) (Alphasense NO2-B43F) and an electrochemical sensor for ozone (O3) (Alphasense OX-B431). The aim of this work is to explore the variance of the aforementioned sensors and how this variability can be used to optimize the measurements of low-cost electrochemical sensors, closer to real ones. The analysis is conducted by employing diagrams, boxplot and violin curves of the groups of sensors used, with satisfactory results.
为优化低成本电化学空气质量传感器的测量而确定安全变化限值
如今,鉴于空气质量对人类健康的重大影响,空气质量研究已成为一个日益突出的研究领域,尤其是在大型城市中心。在许多国家,政府部门和研究中心使用官方的高成本科学仪器来监测本地区的空气质量。与此同时,有兴趣研究当地空气质量的相关市民通常会使用低成本的空气质量传感器进行监测。低成本传感器的优化和评估一直是许多研究小组的研究领域。本文介绍了一项广泛的研究,旨在确定低成本电化学空气质量传感器的安全百分比变化限值,以优化其测量结果。在这项工作中,使用了三个低成本空气质量监测站,其中包括一个二氧化氮(NO2)电化学传感器(Alphasense NO2-B43F)和一个臭氧(O3)电化学传感器(Alphasense OX-B431)。这项工作的目的是探索上述传感器的变异性,以及如何利用这种变异性来优化低成本电化学传感器的测量,使其更接近真实传感器。分析采用了所使用传感器组的图表、方框图和小提琴曲线,结果令人满意。
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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