CIRIAF, Interuniversity Research Center on Pollution and Environment Mauro Felli, University of Perugia, 06125 Perugia, Italy.
Department of Engineering, University of Perugia, 06125 Perugia, Italy.
Sensors (Basel). 2022 Jan 10;22(2):502. doi: 10.3390/s22020502.
The rapid urbanization process brings consequences to urban environments, such poor air quality and the urban heat island issues. Due to these effects, environmental monitoring is gaining attention with the aim of identifying local risks and improving cities' liveability and resilience. However, these environments are very heterogeneous, and high-spatial-resolution data are needed to identify the intra-urban variations of physical parameters. Recently, wearable sensing techniques have been used to perform microscale monitoring, but they usually focus on one environmental physics domain. This paper presents a new wearable system developed to monitor key multidomain parameters related to the air quality, thermal, and visual domains, on a hyperlocal scale from a pedestrian's perspective. The system consisted of a set of sensors connected to a control unit settled on a backpack and could be connected via Wi-Fi to any portable equipment. The device was prototyped to guarantee the easy sensors maintenance, and a user-friendly dashboard facilitated a real-time monitoring overview. Several tests were conducted to confirm the reliability of the sensors. The new device will allow comprehensive environmental monitoring and multidomain comfort investigations to be carried out, which can support urban planners to face the negative effects of urbanization and to crowd data sourcing in smart cities.
快速的城市化进程给城市环境带来了一系列后果,如空气质量差和城市热岛问题。由于这些影响,环境监测受到了关注,目的是识别当地的风险,提高城市的宜居性和弹性。然而,这些环境非常不均匀,需要高空间分辨率的数据来识别城市内部物理参数的变化。最近,可穿戴传感技术已被用于进行微观监测,但它们通常只关注一个环境物理领域。本文提出了一种新的可穿戴系统,用于从行人的角度在超本地尺度上监测与空气质量、热和视觉领域相关的关键多领域参数。该系统由一组连接到背包上的控制单元的传感器组成,并且可以通过 Wi-Fi 连接到任何便携式设备。该设备被原型化以保证传感器的易于维护,并且用户友好的仪表板方便了实时监测概述。进行了多次测试以确认传感器的可靠性。新设备将允许进行全面的环境监测和多领域舒适度研究,这可以支持城市规划者应对城市化的负面影响,并为智慧城市提供人群数据来源。