Powers P E, Kulp T J, Kennedy R
Appl Opt. 2000 Mar 20;39(9):1440-8. doi: 10.1364/ao.39.001440.
Backscatter absorption gas imaging (BAGI) is a technique that uses infrared active imaging to generate real-time video imagery of gas plumes. We describe a method that employs imaging at two wavelengths (absorbed and not absorbed by the gas to be detected) to allow wavelength-differential BAGI. From the frames collected at each wavelength, an absorbance image is created that displays the differential absorbance of the atmosphere between the imager and the backscatter surface. This is analogous to a two-dimensional topographic differential absorption lidar or differential optical absorption spectroscopy measurement. Gas plumes are displayed, but the topographic scene image is removed. This allows a more effective display of the plume image, thus ensuring detection under a wide variety of conditions. The instrument used to generate differential BAGI is described. Data generated by the instrument are presented and analyzed to estimate sensitivity.
后向散射吸收气体成像(BAGI)是一种利用红外主动成像技术生成气体羽流实时视频图像的技术。我们描述了一种采用两个波长(被待检测气体吸收和未被吸收)成像的方法,以实现波长差分BAGI。从每个波长采集的帧中,创建一个吸光度图像,该图像显示成像器与后向散射表面之间大气的差分吸光度。这类似于二维地形差分吸收激光雷达或差分光学吸收光谱测量。气体羽流被显示出来,但地形场景图像被去除。这使得羽流图像的显示更加有效,从而确保在各种条件下都能进行检测。文中描述了用于生成差分BAGI的仪器。展示并分析了该仪器生成的数据,以估计其灵敏度。