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Spatially offset Raman spectroscopy for explosives detection through difficult (opaque) containers

机译:空间偏移拉曼光谱仪用于通过困难(不透明)容器进行爆炸物检测

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With the continuing threat to aviation security from homemade explosive devices, the restrictions on taking a volume of liquid greater than 100 ml onto an aircraft remain in place. From January 2014, these restrictions will gradually be reduced via a phased implementation of technological screening of Liquids, Aerosols and Gels (LAGs). Raman spectroscopy offers a highly sensitive, and specific, technique for the detection and identification of chemicals. Spatially Offset Raman Spectroscopy (SORS), in particular, offers significant advantages over conventional Raman spectroscopy for detecting and recognizing contents within optically challenging (Raman active) containers. Containers vary enormously in their composition; glass type, plastic type, thickness, reflectance, and pigmentation are all variable and cause an infinite range of absorbances, fluorescence backgrounds, Rayleigh backscattered laser light, and container Raman bands. In this paper we show that the data processing chain for Cobalt Light Systems' INSIGHT100 bottlescanner is robust to such variability. We discuss issues of model selection for the detection stage and demonstrate an overall detection rate across a wide range of threats and containers of 97% with an associated false alarm rate of 0.1% or lower.
机译:随着自制爆炸装置对航空安全的持续威胁,将超过100毫升的液体倒入飞机的限制仍然存在。从2014年1月起,将通过分阶段实施液体,气溶胶和凝胶(LAG)的技术筛选来逐步减少这些限制。拉曼光谱法为化学物质的检测和鉴定提供了一种高度灵敏,特异的技术。尤其是,空间偏移拉曼光谱(SORS)与常规拉曼光谱相比,在检测和识别光学挑战性(拉曼活性)容器中的内容物方面具有显着优势。容器的成分差异很大。玻璃类型,塑料类型,厚度,反射率和色素沉着都是可变的,并且会导致无限范围的吸收率,荧光背景,瑞利背散射激光和容器拉曼光谱带。在本文中,我们证明了Cobalt Light Systems的INSIGHT100瓶罐罐的数据处理链对这种可变性具有鲁棒性。我们讨论了在检测阶段选择模型的问题,并演示了在97%的各种威胁和容器中的整体检测率以及与之相关的误报率在0.1%或更低。

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