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用于监测学校室内环境质量的无线气体传感器网络。

A Wireless Gas Sensor Network to Monitor Indoor Environmental Quality in Schools.

机构信息

Laboratory for Gas Sensors, Department of Microsystems Engineering, University of Freiburg, Georges-Köhler-Allee 102, 79110 Freiburg, Germany.

Fraunhofer Institute for Physical Measurement Techniques (IPM), Heidenhofstraße 8, 79110 Freiburg, Germany.

出版信息

Sensors (Basel). 2018 Dec 9;18(12):4345. doi: 10.3390/s18124345.

Abstract

Schools are amongst the most densely occupied indoor areas and at the same time children and young adults are the most vulnerable group with respect to adverse health effects as a result of poor environmental conditions. Health, performance and well-being of pupils crucially depend on indoor environmental quality (IEQ) of which air quality and thermal comfort are central pillars. This makes the monitoring and control of environmental parameters in classes important. At the same time most school buildings do neither feature automated, intelligent heating, ventilation, and air conditioning (HVAC) systems nor suitable IEQ monitoring systems. In this contribution, we therefore investigate the capabilities of a novel wireless gas sensor network to determine carbon dioxide concentrations, along with temperature and humidity. The use of a photoacoustic detector enables the construction of long-term stable, miniaturized, LED-based non-dispersive infrared absorption spectrometers without the use of a reference channel. The data of the sensor nodes is transmitted via a Z-Wave protocol to a central gateway, which in turn sends the data to a web-based platform for online analysis. The results show that it is difficult to maintain adequate IEQ levels in class rooms even when ventilating frequently and that individual monitoring and control of rooms is necessary to combine energy savings and good IEQ.

摘要

学校是人口最密集的室内区域之一,而儿童和青少年由于恶劣的环境条件对健康产生不良影响,是最脆弱的群体。学生的健康、表现和幸福感取决于室内环境质量(IEQ),空气质量和热舒适度是其中的核心要素。这使得在教室中监测和控制环境参数变得尤为重要。然而,大多数学校建筑既没有配备自动化、智能化的供暖、通风和空调(HVAC)系统,也没有合适的 IEQ 监测系统。在本研究中,我们调查了一种新型无线气体传感器网络来确定二氧化碳浓度,以及温度和湿度的能力。使用光声探测器可以构建长期稳定、小型化、基于 LED 的非分散红外吸收光谱仪,而无需使用参考通道。传感器节点的数据通过 Z-Wave 协议传输到中央网关,中央网关再将数据发送到基于网络的平台进行在线分析。结果表明,即使频繁通风,也很难在教室内维持足够的 IEQ 水平,因此需要对各个房间进行单独监测和控制,以在节约能源和良好的 IEQ 之间取得平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/925c/6308510/76513cb97e9d/sensors-18-04345-g001.jpg

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