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FeinPhone:基于低成本智能手机摄像头的二维颗粒物传感器。

FeinPhone: Low-cost Smartphone Camera-based 2D Particulate Matter Sensor.

机构信息

Karlsruhe Institute of Technology (KIT), TECO/Pervasive Computing Systems, Karlsruhe 76131, Germany.

出版信息

Sensors (Basel). 2019 Feb 12;19(3):749. doi: 10.3390/s19030749.

Abstract

Precise, location-specific fine dust measurement is central for the assessment of urban air quality. Classic measurement approaches require dedicated hardware, of which professional equipment is still prohibitively expensive (>10k$) for dense measurements, and inexpensive sensors do not meet accuracy demands. As a step towards filling this gap, we propose , a phone-based fine dust measurement system that uses camera and flashlight functions that are readily available on today's off-the-shelf smart phones. We introduce a cost-effective passive hardware add-on together with a novel counting approach based on light-scattering particle sensors. Since our approach features a 2D sensor (the camera) instead of a single photodiode, we can employ it to capture the scatter traces from individual particles rather than just retaining a light intensity sum signal as in simple photometers. This is a more direct way of assessing the particle count, it is robust against side effects, e.g., from camera image compression, and enables gaining information on the size spectrum of the particles. Our proof-of-concept evaluation comparing several sensors with data from a high-quality APS/SMPS (Aerodynamic Particle Sizer/Scanning Mobility Particle Sizer) reference device at the World Calibration Center for Aerosol Physics shows that the collected data shows excellent correlation with the inhalable coarse fraction of fine dust particles (r > 0.9) and can successfully capture its levels under realistic conditions.

摘要

精确的、位置特定的细粉尘测量对于城市空气质量评估至关重要。传统的测量方法需要专用硬件,而对于密集测量来说,专业设备仍然过于昂贵(超过 10000 美元),而廉价的传感器则无法满足精度要求。为了填补这一空白,我们提出了一种基于手机的细粉尘测量系统,该系统利用了当今现成的智能手机上现成的摄像头和闪光灯功能。我们引入了一种具有成本效益的被动硬件附加组件以及一种基于光散射粒子传感器的新型计数方法。由于我们的方法采用了二维传感器(摄像头)而不是单个光电二极管,因此我们可以利用它来捕获单个粒子的散射轨迹,而不是像简单光度计那样仅保留光强总和信号。这是一种更直接的评估粒子计数的方法,它对副作用(例如来自相机图像压缩)具有鲁棒性,并能够获取有关粒子大小谱的信息。我们在世界气溶胶物理校准中心使用几种传感器与来自高质量 APS/SMPS(空气动力学粒子粒度仪/扫描迁移率粒子粒度仪)参考设备的数据进行的概念验证评估表明,所收集的数据与可吸入的粗粉尘颗粒的细粉尘颗粒(r > 0.9)具有极好的相关性,并能在实际条件下成功捕获其水平。

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