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Design and Evaluation of a Metropolitan Air Pollution Sensing System

机译:大城市空气污染传感系统的设计与评估

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Urban air pollution is believed to be a major contributor to premature deaths and chronic illnesses worldwide. Current systems for urban air pollution monitoring rely on static sites with low spatial resolution, and moreover, lack the means to estimate exposures for (potentially mobile) individuals in order to make medical inferences. This paper describes the design and evaluation of a low-cost participatory sensing system called HazeWatch that uses a combination of portable mobile sensor units, smart-phones, cloud computing, and mobile apps to measure, model, and personalize air pollution information for individuals. Our contributions are three-fold: 1) we architect, prototype, and compare multiple hardware devices and software applications for collecting urban air pollution data with high spatial density in real-time; 2) we develop web-based tools and mobile apps for the visualization and estimation of air pollution exposure customized to individuals; and 3) we conduct field trials to validate our system and demonstrate that it yields much more accurate exposure estimates than current systems. We believe our system can increase user engagement in exposure management, and better inform medical studies linking air pollution with human health.
机译:据信,城市空气污染是导致世界范围内过早死亡和慢性病的主要因素。当前用于城市空气污染监测的系统依赖于空间分辨率低的静态站点,而且缺乏用于估算(可能移动的)个人暴露的方法以进行医学推断。本文介绍了一种名为HazeWatch的低成本参与式感应系统的设计和评估,该系统结合了便携式移动传感器单元,智能手机,云计算和移动应用程序来测量,建模和个性化个人的空气污染信息。我们的贡献有三方面:1)我们设计,原型设计并比较多种硬件设备和软件应用程序,以实时收集具有高空间密度的城市空气污染数据; 2)我们开发了基于Web的工具和移动应用程序,用于可视化和估算针对个人定制的空气污染暴露; 3)我们进行了现场试验,以验证我们的系统,并证明该系统比目前的系统能产生更准确的暴露估计。我们相信我们的系统可以增加用户对暴露管理的参与度,并更好地为将空气污染与人类健康联系起来的医学研究提供信息。

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