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开发一个多元回归模型,通过参考测量值和气象参数对低成本传感器进行校准。

Development of a multiple regression model to calibrate a low-cost sensor considering reference measurements and meteorological parameters.

机构信息

Energy Engineering Department, Universidad de Ingenieria y Tecnologia - UTEC, Lima, Peru.

出版信息

Environ Monit Assess. 2020 Jul 9;192(8):498. doi: 10.1007/s10661-020-08440-w.

Abstract

Low-cost air quality sensors are widely used to improve temporal and spatial resolution of air quality data. In Lima, Peru, only a limited number of reference air quality monitors have been installed, which has led to a lack of data for establishing environmental and health policies. Low-cost technology is promising for developing countries because it is small and inexpensive to operate and maintain. However, considerable work remains to be done to improve data quality. In this study, a low-cost sensor was installed with a reference monitor station as the first stage for the calibration process, and a multiple regression model was developed based on reference measurements as an outcome variable using sensor data, temperature, and relative humidity as the predictive parameters. The results show that this particular technology exhibits a promising performance in measuring PM and PM (particulate matter with diameter aerodynamic less than 2.5 μm and 10 μm, respectively); however, the correlation for PM appears to be better. Temperature and relative humidity data from the sensor were only partially analyzed due to the evident low correlation with the reference meteorological data. The objective of this study is to begin analyzing the performance of low-cost sensors that have already been introduced to the Peruvian market and selecting those that perform better to provide for informed decision-making.

摘要

低成本空气质量传感器被广泛用于提高空气质量数据的时空分辨率。在秘鲁利马,仅安装了有限数量的参考空气质量监测器,这导致缺乏制定环境和健康政策的数据。低成本技术对于发展中国家来说是有前景的,因为它的操作和维护成本低且体积小。然而,仍需要做大量工作来提高数据质量。在这项研究中,将低成本传感器与参考监测站一起安装,作为校准过程的第一阶段,并使用参考测量值作为因变量,使用传感器数据、温度和相对湿度作为预测参数,开发了一个多元回归模型。结果表明,这项特定技术在测量 PM 和 PM(分别为空气动力学直径小于 2.5μm 和 10μm 的颗粒物)方面表现出了良好的性能;然而,PM 的相关性似乎更好。由于与参考气象数据的相关性较低,传感器的温度和相对湿度数据仅进行了部分分析。本研究的目的是开始分析已经引入秘鲁市场的低成本传感器的性能,并选择性能更好的传感器,为明智的决策提供依据。

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