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Performance status of a small robot-mounted or hand-held, solar-blind, standoff chemical, biological, and explosives (CBE) sensor

机译:用于小型机器人安装或手持式,太阳能盲,横向化学,生物和爆炸物(CBE)传感器的性能状态

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Photon Systems and JPL are continuing development of a new technology robot-mounted or hand-held sensor for reagentless, short-range, standoff detection and identification of trace levels CBE materials on surfaces. This deep ultraviolet CBE sensor is the result of ongoing Army STTR and DTRA programs. The evolving 6 lb, 15W, lantern-size sensor can discriminate CBE from background clutter materials using a combination of deep UV excited resonance Raman (RR) and laser induced native fluorescence (LINF) emissions resulting from excitation by a new technology deep UV laser. Standoff excitation of suspicious packages, vehicles, persons, and other objects that may contain hazardous materials is accomplished using wavelengths below 250nm where RR and LINF emissions occupy distinctly different wavelength regions. This enables simultaneous detection of RR and LINF emissions with no spectral overlap or interference of LINF over RR or RR over LINF. The new eye-safe targeted ultraviolet chemical, biological, and explosives (TUCBE) sensor can detect and identify less than 1 μg/cm~2 of explosives or 10~4 bacterial spores at 10 meters standoff, or 10 ng/cm~2 of explosives or 10~2 bacterial spores/cm~2 at 1 meter standoff. Detection and identification requires less than 1 ms and has a sample rate up to 20 Hz. Lower concentrations of contamination can be detected and identified as closer ranges and higher concentrations at longer ranges. The sensor is solar blind and can be operated in full daylight conditions as a result of excitation and detection in the deep UV and the use of a gated detection system.
机译:光子系统和JPL正在继续开发一种用于无可用的机器人安装的或手持式传感器,用于无可可测学,短程,横向检测和识别表面上的痕量水平CBE材料的识别。这种深紫外线CBE传感器是持续的陆军STTR和DTRA程序的结果。不断发展的6磅,15W,灯笼尺寸传感器可以使用深紫外激发共振raman(RR)和激光诱导的天然荧光(LINF)排放来区分CBE从背景杂波材料,由新技术深紫外激光引起的激发产生的天然荧光(LINF)排放。使用低于250nm的波长来实现可疑包装,车辆,人物和其他可能包含危险物质的物体的抵抗激发,其中RR和LINF排放占用明显不同的波长区域。这使得能够同时检测RR和LINF排放,在LINF上没有频谱重叠或LINF的干扰。新的人眼安全靶向紫外线化学,生物和爆炸物(TUCBE)传感器可以检测和识别小于1微克/厘米〜2炸药或10〜4个细菌孢子在10米对峙,或10ng /厘米〜2的爆炸物或10〜2个细菌孢子/ cm〜2在1米的梯级。检测和识别需要小于1ms,并具有高达20 Hz的样品率。可以检测较低浓度的污染,并将其鉴定为更近的范围和更高的浓度。传感器是太阳盲,可以在深紫色的深度和检测中,在完整的日光条件下操作,并且使用门控检测系统。

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