N Genikomsakis Konstantinos, Galatoulas Nikolaos-Fivos, I Dallas Panagiotis, Candanedo Ibarra Luis Miguel, Margaritis Dimitris, S Ioakimidis Christos
European Research Area Chair (*Holder) 'Net-Zero Energy Efficiency on City Districts, NZED' Unit, Research Institute for Energy, University of Mons, Rue de l'Epargne, 56, 7000 Mons, Belgium.
Wireless Network Systems Division, INTRACOM Telecom S.A., 19.7 km Markopoulo Ave., Peania, 19002 Athens, Greece.
Sensors (Basel). 2018 Apr 1;18(4):1056. doi: 10.3390/s18041056.
Recent developments in the field of low-cost sensors enable the design and implementation of compact, inexpensive and portable sensing units for air pollution monitoring with fine-detailed spatial and temporal resolution, in order to support applications of wider interest in the area of intelligent transportation systems (ITS). In this context, the present work advances the concept of developing a low-cost portable air pollution monitoring system (APMS) for measuring the concentrations of particulate matter (PM), in particular fine particles with a diameter of 2.5 μm or less (PM2.5). Specifically, this paper presents the on-field testing of the proposed low-cost APMS implementation using roadside measurements from a mobile laboratory equipped with a calibrated instrument as the basis of comparison and showcases its accuracy on characterizing the PM2.5 concentrations on 1 min resolution in an on-road trial. Moreover, it demonstrates the intended application of collecting fine-grained spatio-temporal PM2.5 profiles by mounting the developed APMS on an electric bike as a case study in the city of Mons, Belgium.
低成本传感器领域的最新进展使得能够设计并实现紧凑、廉价且便携的传感单元,用于以精细的空间和时间分辨率监测空气污染,以支持智能交通系统(ITS)领域更广泛的应用。在此背景下,本工作推进了开发一种低成本便携式空气污染监测系统(APMS)的概念,用于测量颗粒物(PM)的浓度,特别是直径为2.5微米或更小的细颗粒物(PM2.5)。具体而言,本文展示了所提出的低成本APMS实施方案的现场测试,该测试使用配备校准仪器的移动实验室进行路边测量作为比较基础,并展示了其在道路试验中以1分钟分辨率表征PM2.5浓度的准确性。此外,作为比利时蒙斯市的一个案例研究,通过将开发的APMS安装在电动自行车上,展示了收集细粒度时空PM2.5分布图的预期应用。