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Detecting Aerosols and Vapors with Fourier-transform Infrared Spectrometers

机译:用傅里叶变换红外光谱仪检测气溶胶和蒸汽

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Two experiments are conducted with a Fourier Transform InfraRed (FTIR) spectrometer. (1) to detect and identify Bacillus subtilis subsp. niger (BG) bio-aerosol in an open-air release and (2) to estimate the concentration of a small amount of TriEthyl Phosphate (TEP) vapor in a closed chamber. The algorithms are based on radiative transfer theory and statistical signal processing methods. A subspace orthogonal projection operator is used to statistically subtract the large thermal background contribution to the measurements and a robust maximum likelihood solution is used to deduce the target spectrum and estimate its mass-column concentration. The deduced BG (TEP) extinction spectrum matched the library spectrum very well. The estimation of the TEP vapor time-dependent concentration is excellent. Detection threshold and probabilities of detection and false alarm are computed (expectation-maximization) with a Gaussian-mixture model. The results of this study are encouraging, as they suggest, for the first time to our knowledge, the feasibility of detecting bio-aerosols with passive FTIR sensors.
机译:用傅里叶变换红外(FTIR)光谱仪进行两次实验。 (1)检测和鉴定Bacillus subtilis亚数据。尼日尔(BG)露天释放的生物气溶胶和(2)以估计封闭室中少量三乙酯(Tep)蒸汽的浓度。该算法基于辐射转移理论和统计信号处理方法。子空间正交投影算子用于统计减去对测量的大型热背景贡献,并且使用稳健的最大似然解决方案用于推导目标光谱并估计其质量柱浓度。推导出的BG(Tep)灭绝光谱非常好地匹配了库谱。 Tep蒸汽时间依赖性浓度的估计是优异的。使用高斯混合模型计算(预期最大化)检测阈值和检测概率和误报。这项研究的结果是令人鼓舞的,正如他们所暗示的,我们的知识首次令人鼓舞的是,用被动FTIR传感器检测生物气溶胶的可行性。

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