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High-performance orthogonal sensing system and data analysis algorithm for trace explosives detection

机译:用于痕量炸药检测的高性能正交传感系统和数据分析算法

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A hybrid sensor system is developed for trace explosives detection. The system incorporates orthogonal operational principles of its subcomponents: Surface Enhanced Raman Spectroscopy (SERS) provides high sensitivity as well as high selectivity, i.e., ultra-low detection limits simultaneously with very low false alarm rates while an ionization-based method, such as Ion Mobility Spectrometry (IMS), is used as a pre-filter to SERS, for this approach. This solution offers a significantly improved detection technology when both modes are evaluated concurrently, especially making a significant enhancement of the capability of SERS for open environment applications. This concept of operation provides a clean and controlled environment, and it enhances the operational reliability of SERS which forms the critical unit for this new detection system. The combined system outperforms the individual IMS or SERS components taken individually. This hybrid, orthogonal sensing method can be applied to other types of threat detection as well, namely, chemical and biological threats.
机译:开发了一种混合传感器系统,用于痕量炸药的检测。该系统整合了其子组件的正交工作原理:表面增强拉曼光谱(SERS)提供了高灵敏度和高选择性,即超低检测限,同时具有非常低的误报率,而基于离子化的方法(例如离子)移动光谱(IMS)被用作SERS的预过滤器。当同时评估两种模式时,该解决方案提供了一种显着改进的检测技术,尤其是大大增强了SERS在开放环境应用中的功能。这种操作概念提供了一个干净可控的环境,并增强了SERS的操作可靠性,SERS构成了此新检测系统的关键单元。组合系统的性能优于单独使用的单个IMS或SERS组件。这种混合的正交感测方法也可以应用于其他类型的威胁检测,即化学和生物威胁。

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