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Algorithms For Chemical Detection, Identification And Quantification For Thermal Hyperspectral Imagers

机译:热高光谱成像仪化学检测,鉴定和定量的算法

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Standoff detection, identification and quantification of chemicals in the gaseous state are fundamental needs in several fields of applications. Sensor requirements derived from these applications include high sensitivity, low false alarms and real-time operation, all in a compact and robust package suitable for field use. The thermal infrared portion of the electromagnetic spectrum has been utilized to implement such chemical sensors, either with spectrometers (with no or moderate imaging capability) or with imagers (with moderate spectral capability). Only with the recent emergence of high-speed, large format infrared imaging arrays has it been possible to design chemical sensors offering uncompromising performance in the spectral, spatial, as well as the temporal domain. It is clear from analytical studies that the combined spatial and spectral information holds enormous promises on improving the current performance of passive detection, identification and quantification of chemical agents. This paper presents detection, identification and quantification algorithms developed for hyperspectral imagers operating in the thermal infrared. The effectiveness of these algorithms is illustrated using gaseous releases datacubes acquired using the Telops FIRST imaging spectrometer in the field.
机译:气态化学物质的对峙检测,鉴定和定量是几个应用领域的基本需求。从这些应用中得出的传感器要求包括高灵敏度,低误报和实时操作,所有这些都采用紧凑而坚固的封装,适合现场使用。电磁光谱的热红外部分已被用于通过光谱仪(无成像能力或中等成像能力)或成像仪(具有中等光谱能力)来实现这种化学传感器。只有最近出现了高速,大幅面红外成像阵列,才有可能设计出在光谱,空间和时域性能均不受影响的化学传感器。从分析研究中可以明显看出,组合的空间和光谱信息在改善化学试剂的被动检测,鉴定和定量化的当前性能方面具有广阔的前景。本文介绍了为在热红外下工作的高光谱成像仪开发的检测,识别和定量算法。这些算法的有效性通过在现场使用Telops FIRST成像光谱仪获得的气体释放数据立方体进行了说明。

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