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Development of a Low-Cost Air Quality Data Acquisition IoT-based System using Arduino Leonardo

机译:使用Arduino Leonardo开发低成本空气质量数据采集基于IoT的系统

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Air pollution is responsible for an estimated 5.5 million deaths in 2013 which costed the global economy approximately US$225 billion in lost labor income. To address the problems caused by air pollution, this study aims to develop a low-cost and portable air quality monitoring system that detects the levels of CO, PM2.5, PM10, temperature, and humidity. Using Internet of Things (IoT), the data that the system gathers can be accessed through the internet. Moreover, the system assesses the obtained data through a comparative analysis with the AQI. The Iterative Design Loop method was used in the development of the air quality monitoring system. Furthermore, the sensors were programmed using the Arduino Integrated Development Environment (IDE). Using the Welch’s t-test, it was found that the obtained data of the system is not significantly different to that of the standard air quality monitoring systems. To achieve more accurate data from the developed system, the raw data of the developed and standard system were calibrated through an equation from the trendline. Through the use of Acer CloudProfessor, the study successfully developed an air quality monitoring system that can be accessed through the internet.
机译:2013年,空气污染导致550万人死亡,全球经济损失了约2250亿美元的劳动收入。为了解决由空气污染引起的问题,本研究旨在开发一种低成本的便携式空气质量监测系统,该系统可以检测CO,PM2.5,PM10,温度和湿度的水平。使用物联网(IoT),可以通过Internet访问系统收集的数据。此外,系统通过与AQI的比较分析评估获得的数据。迭代设计循环法用于空气质量监测系统的开发。此外,传感器是使用Arduino集成开发环境(IDE)进行编程的。使用Welch的t检验,发现系统获得的数据与标准空气质量监测系统的数据没有显着差异。为了从已开发系统中获得更准确的数据,已通过趋势线中的方程式对已开发系统和标准系统的原始数据进行了校准。通过使用Acer CloudProfessor,该研究成功开发了可通过互联网访问的空气质量监测系统。

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