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Geometrically Optimized, Labr3:Ce Scintillation Sensor Array for Enhanced Stand-Off Direction Finding of Gamma Radiation Sources

机译:几何优化,Labr3:Ce闪烁传感器阵列,用于增强凝视源的脱扣方向寻找伽马辐射源

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A Radiation Source Identification and Targeting (RadSITE) innovation has been conceptually demonstrated that remotely detects and identifies one or more Localized Gamma Sources simultaneously and also provides Azimuth Directions of each source. The innovation exploits the superior energy resolution of Cerium Doped Lanthanum Bromide (LaBr3:Ce) Scintillators to select only photons emanating directly from the localized source(s). Laboratory Bench Testing provided physical confirmation that an array of unique, elongated geometry, LaBr3:Ce sensors performed as predicted by MCNP Modeling to resolve source azimuth direction. The response of each sensor element is anisotropic providing a response dependent on the azimuth of the source relative to the sensor, while the integrated response of the entire array is isotropic, providing a source strength-distance indicator to act as a reference for an original software algorithm that processes each isotope response to determine azimuth. Laboratory tests have confirmed that an array of four (4) sensors would be sufficient to provide ±5° azimuth determination over a 360° field of view. The approach accommodates a large volume of scintillation material with minimal shielding <20% compared to about 50% for Coded Aperture approaches to provide a high sensitivity and a wide (360°) field of view. This Patent Pending innovation has been integrated with an iRobot ATRV Robotic Platform and autonomous approach to isotopic sources in a field environment has been demonstrated.
机译:辐射源识别和定位(RadSITE)创新已经概念性地显示,远程检测和识别一个或多个同时局部伽马源头,并且还提供每个源的方位。创新利用掺铈溴化镧(LaBr3:Ce)的优越的能量分辨率闪烁器以仅选择直接从局部源(一个或多个)发出的光子。实验室台架试验条件是唯一的,细长的几何结构的阵列,LaBr3物理确认:通过MCNP建模所预测到的决心源方位角方向的Ce传感器进行。每个传感器元件的响应是各向异性提供响应依赖于相对于所述传感器源的方位,而整个阵列的集成响应是各向同性的,提供源强度距离指示器充当原始软件的参考算法处理每个同位素响应来确定方位角。实验室试验已经证实,四(4)的传感器阵列将足以在视360°视场提供±5°方位角确定。该方法适应大体积具有最小的屏蔽闪烁材料的<20%相比,约50%为编码孔径接近,以提供高灵敏度和宽(360度)的视场。这个正在申请专利的创新已经集成在现场环境的iRobot公司ATRV机器人平台和自动进场同位素源已​​被证明。

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