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An Enhanced Multi-wavelength Ultraviolet Biological Trigger Lidar

机译:增强的多波长紫外线生物触发器LIDAR

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A compact Ultraviolet Biological Trigger Lidar (UBTL) instrument for detection and discrimination of bio-warfare-agent (BWA) simulant aerosol clouds was developed by us [Prasad, et al, 2004] using a 5mW, 375nm semiconductor UV optical source (SUVOS) laser diode. It underwent successful field tests at Dugway Proving Ground and demonstrated measurement ranges of over 300m for elastic scattering and >100m for fluorescence. The UBTL was modified during mid-2004 to enhance its detection and discrimination performance with increased range of operation and sensitivity. The major optical modifications were: 1. increase in telescope collection aperture to 200 mm diameter: 2. addition of 266nm and 977nm laser transmitters: 3. addition of three detection channels for 266nm and 977nm elastic backscatter and fluorescence centered at 330nm. Also the commercial electronics of the original UBTL were replaced with a multi-channel field programmable gate array (FPGA) chip for laser diode modulation and data acquisition that allowed simultaneous and continuous operation of the UBTL sensor on all of its transmitter and receiver wavelengths. A notebook computer was added for data display and storage. Field tests were performed during July 2004 at the Edgewood Chemical and Biological Center in Maryland to establish the enhanced performance of UBTL subsystems. Results of these tests are presented and discussed.
机译:使用5MW,375nm半导体UV光源(SUVOS)开发了一种紧凑的紫外线生物触发器(BWA)模拟气溶胶云的紫外线生物触发器(BWA)模拟气溶胶云激光二极管。它在探险的地面进行了成功的现场测试,并证明了弹性散射超过300米的测量范围,荧光为100米。 UBTL在2004年中期进行了修改,以提高其检测和辨别性能,随着操作范围和敏感性而增加。主要的光学修改是:1。望远镜收集孔径增加至200毫米直径:2.添加266nm和977nm激光发射器:3。添加三个检测通道266nm,977nm弹性反向散射和荧光以330nm为中心。此外,原始UBTL的商业电子器件被用于激光二极管调制和数据采集的多通道场可编程栅极阵列(FPGA)芯片替换,允许在所有发射机和接收器波长上同时和连续操作UBTL传感器。为数据显示和存储添加了一个笔记本电脑。在马里兰州的Edgwood化学和生物中心于2004年7月进行了现场测试,以建立UBTL子系统的增强性能。提出和讨论了这些测试的结果。

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