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Personal Exposure Estimates via Portable and Wireless Sensing and Reporting of Particulate Pollution

机译:个人曝光通过便携式和无线传感和颗粒污染的报告估计

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Low-cost, portable particle sensors (n = 3) were designed, constructed, and used to monitor human exposure to particle pollution at various locations and times in Lubbock, TX. The air sensors consisted of a Sharp GP2Y1010AU0F dust sensor interfaced to an Arduino Uno R3, and a FONA808 3G communications module. The Arduino Uno was used to receive the signal from calibrated dust sensors to provide a concentration (mu g/m(3)) of suspended particulate matter and coordinate wireless transmission of data via the 3G cellular network. Prior to use for monitoring, dust sensors were calibrated against a reference aerosol monitor (RAM-1) operating independently. Sodium chloride particles were generated inside of a 3.6 m(3) mixing chamber while the RAM-1 and each dust sensor recorded signals and calibration was achieved for each dust sensor independently of others by direct comparison with the RAM-1 reading. In an effort to improve the quality of the data stream, the effect of averaging replicate individual pulses of the Sharp sensor when analyzing zero air has been studied. Averaging data points exponentially reduces standard deviation for all sensors with n < 2000 averages but averaging produced diminishing returns after approx. 2000 averages. The sensors exhibited standard deviations for replicate measurements of 3-6 mu g/m(3) and corresponding 3 sigma detection limits of 9-18 mu g/m(3) when 2000 pulses of the dust sensor LED were averaged over an approx. 2 min data collection/transmission cycle. To demonstrate portable monitoring, concentration values from the dust sensors were sent wirelessly in real time to a ThingSpeak channel, while tracking the sensor's latitude and longitude using an on-board Global Positioning System (GPS) sensor. Outdoor and indoor air quality measurements were made at different places and times while human volunteers carried sensors. The measurements indicated walking by restaurants and cooking at home increased the exposure to particulate matter. The construction of the dust sensors and data collected from this research enhance the current research by describing an open-source concept and providing initial measurements. In principle, sensors can be massively multiplexed and used to generate real-time maps of particulate matter around a given location.
机译:设计,构建,构建,制造了低成本,便携式粒子传感器(n = 3),用于监测人类暴露于罗布克,TX的各个地点的颗粒污染。空气传感器由夏普GP2Y101010F灰尘传感器组成,嵌入到Arduino UNO R3和FONA808 3G通信模块。 Arduino UNO用于从校准的灰尘传感器接收信号,以提供悬浮颗粒物质的浓度(MU G / M(3)),并通过3G蜂窝网络坐标数据的无线传输。在使用之前进行监测,灰尘传感器针对独立操作的参考气溶胶监测器(RAM-1)校准。通过与RAM-1读数直接比较,为每个灰尘传感器和每个灰尘传感器达到氯化钠颗粒,在3.6μm(3)(3)个混合室内产生氯化钠颗粒。为了提高数据流的质量,研究了在分析零空气时平均复制锐传感器的单独脉冲的效果。平均数据点呈指数级为具有N <2000平均值的所有传感器的标准偏差,但是大约在大约后的平均递减。 2000年平均值。传感器表现出3-6μg/ m(3)的复制测量的标准偏差,并且当灰尘传感器LED的2000脉冲平均超过约时,相应的3 sigma检测限度为9-18μg/ m(3)。 2分钟数据收集/传输周期。为了展示便携式监测,从灰尘传感器的浓度值实时发送到物品寄存道,同时使用板载全球定位系统(GPS)传感器跟踪传感器的纬度和经度。户外和室内空气质量测量是在不同的地方和时代进行的,而人类志愿者携带传感器。在家庭中散步和烹饪的测量结果增加了暴露于颗粒物质。通过描述开源概念和提供初始测量,从该研究中收集的灰尘传感器和数据的构造增强了当前的研究。原则上,传感器可以是大量的复用,并且用于在给定位置产生颗粒物质的实时图。

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