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Optical detection of chemical warfare agents and toxic industrial chemicals

机译:光学检测化学战剂和有毒工业化学品

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We present an analytical model evaluating the suitability of optical absorption based spectroscopic techniques for detection of chemical warfare agents (CWAs) and toxic industrial chemicals (TICs) in ambient air. The sensor performance is modeled by simulating absorption spectra of a sample containing both the target and multitude of interfering species as well as an appropriate stochastic noise and determining the target concentrations from the simulated spectra via a least square fit (LSF) algorithm. The distribution of the LSF target concentrations determines the sensor sensitivity, probability of false positives (PFP) and probability of false negatives (PFN). The model was applied to CO_2 laser based photoacosutic (L-PAS) CWA sensor and predicted single digit ppb sensitivity with very low PFP rates in the presence of significant amount of interferences. This approach will be useful for assessing sensor performance by developers and users alike; it also provides methodology for inter-comparison of different sensing technologies.
机译:我们提出了一种分析模型,用于评估基于光吸收的光谱技术在环境空气中检测化学战剂(CWA)和有毒工业化学品(TICs)的适用性。通过模拟包含目标和多种干扰物质以及适当随机噪声的样品的吸收光谱,并通过最小二乘拟合(LSF)算法从模拟光谱中确定目标浓度,可以对传感器性能进行建模。 LSF目标浓度的分布确定传感器灵敏度,假阳性概率(PFP)和假阴性概率(PFN)。该模型已应用于基于CO_2激光的光声(L-PAS)CWA传感器,并在存在大量干扰的情况下以极低的PFP速率预测了单位ppb灵敏度。这种方法对于评估开发人员和用户的传感器性能非常有用;它还提供了相互比较不同传感技术的方法。

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