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Infrared tomographic system for monitoring the two-dimensional distribution of atmospheric pollution over limited areas

机译:红外断层扫描系统,用于监测有限区域内大气污染的二维分布

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The authors analyze the feasibility and performance of a particular tomographic system for atmospheric pollution monitoring over limited areas (e.g. urban areas). Such a system exploits attenuation-based infrared measurements of the average concentration of the fundamental molecular species of pollutants along rectilinear paths. First, the paper demonstrates the feasibility of an apparatus based on semiconductor infrared laser diode transmitters and passive retroreflectors, capable of measuring the average concentration of pollutants along rectilinear paths with 2 km maximum length, by exploiting their infrared absorption properties. For each gaseous species of interest, the optimal wavelength is then singled out, with the purpose of applying the derivative method for measuring the corresponding average atmospheric concentration. The optimal wavelengths are determined based on both absorption data of atmospheric components and plausible ranges of variation of their concentration. Finally, the authors present simulations carried out to evaluate the reconstruction of spatial concentration fields of several air pollutants, obtained through a tomographic inversion algorithm exploiting simultaneous attenuation measurements made along different infrared links. Two different network topologies for such measurements are considered.
机译:作者分析了特定断层扫描系统在有限区域(例如城市区域)中进行大气污染监测的可行性和性能。这样的系统利用基于衰减的红外测量来测量污染物沿直线路径的基本分子种类的平均浓度。首先,本文证明了基于半导体红外激光二极管发射器和无源后向反射器的装置的可行性,该装置能够利用污染物的红外吸收特性来测量最大长度为2 km的直线路径上污染物的平均浓度。然后,针对每种感兴趣的气态物质,选择最佳波长,以应用导数法测量相应的平均大气浓度。最佳波长是根据大气成分的吸收数据及其浓度变化的合理范围确定的。最后,作者们提出了一些模拟方法,以评估几种空气污染物的空间浓度场的重建,这些重建是通过层析成像反演算法获得的,该算法利用沿不同红外链路同时进行的衰减测量。考虑用于这种测量的两种不同的网络拓扑。

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