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低成本 PM 传感器在空气质量监测中可能应用领域的研究。

An Investigation on the Possible Application Areas of Low-Cost PM Sensors for Air Quality Monitoring.

机构信息

ENEA-Italian National Agency for New Technologies, Energy and Sustainable Economic Development, Department for Sustainability-Brindisi Research Center, SS. 7 Appia, km 706, 72100 Brindisi, Italy.

出版信息

Sensors (Basel). 2023 Apr 14;23(8):3976. doi: 10.3390/s23083976.

Abstract

In recent years, the availability on the market of low-cost sensors (LCSs) and low-cost monitors (LCMs) for air quality monitoring has attracted the interest of scientists, communities, and professionals. Although the scientific community has raised concerns about their data quality, they are still considered a possible alternative to regulatory monitoring stations due to their cheapness, compactness, and lack of maintenance costs. Several studies have performed independent evaluations to investigate their performance, but a comparison of the results is difficult due to the different test conditions and metrics adopted. The U.S. Environmental Protection Agency (EPA) tried to provide a tool for assessing the possible uses of LCSs or LCMs by publishing guidelines to assign suitable application areas for each of them on the basis of the mean normalized bias (MNB) and coefficient of variance (CV) indicators. Until today, very few studies have analyzed LCS performance by referring to the EPA guidelines. This research aimed to understand the performance and the possible application areas of two PM sensor models (PMS5003 and SPS30) on the basis of the EPA guidelines. We computed the R, RMSE, MAE, MNB, CV, and other performance indicators and found that the coefficient of determination (R) ranged from 0.55 to 0.61, while the root mean squared error (RMSE) ranged from 11.02 µg/m to 12.09 µg/m. Moreover, the application of a correction factor to include the humidity effect produced an improvement in the performance of the PMS5003 sensor models. We also found that, based on the MNB and CV values, the EPA guidelines assigned the SPS30 sensors to the "informal information about the presence of the pollutant" application area (Tier I), while PMS5003 sensors were assigned to the "supplemental monitoring of regulatory networks" area (Tier III). Although the usefulness of the EPA guidelines is acknowledged, it appears that improvements are necessary to increase their effectiveness.

摘要

近年来,市场上出现了低成本传感器 (LCS) 和低成本监测器 (LCM),用于空气质量监测,引起了科学家、社区和专业人士的兴趣。尽管科学界对其数据质量表示担忧,但由于它们价格低廉、体积小巧且无需维护成本,仍被认为是监管监测站的一种可行替代方案。 已经有几项研究进行了独立评估,以调查它们的性能,但由于采用了不同的测试条件和指标,很难比较结果。美国环境保护署 (EPA) 试图通过发布指南来提供一种评估 LCS 或 LCM 可能用途的工具,根据平均归一化偏差 (MNB) 和变异系数 (CV) 指标为它们各自分配合适的应用领域。到目前为止,很少有研究根据 EPA 指南分析 LCS 的性能。本研究旨在根据 EPA 指南,理解两种 PM 传感器模型(PMS5003 和 SPS30)的性能和可能的应用领域。我们计算了 R、RMSE、MAE、MNB、CV 和其他性能指标,发现决定系数 (R) 范围在 0.55 到 0.61 之间,而均方根误差 (RMSE) 范围在 11.02µg/m 到 12.09µg/m 之间。此外,应用校正因子来包括湿度效应对提高 PMS5003 传感器模型的性能有帮助。我们还发现,根据 MNB 和 CV 值,EPA 指南将 SPS30 传感器分配到“存在污染物的非正式信息”应用领域 (Tier I),而 PMS5003 传感器则分配到“补充监管网络监测”领域 (Tier III)。尽管承认 EPA 指南的有用性,但似乎需要改进以提高其有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb3c/10143454/27e6b7cdf742/sensors-23-03976-g001.jpg

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