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A neutron based vehicle-borne improvised explosive device detection system

机译:基于中子的车载简易爆炸装置检测系统

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Vehicle-borne improvised explosive devices pose significant risk to government facilities, economic centers and the general public. The detonation of large-scale explosive devices is a worldwide phenomenon. Checkpoint operations currently call for a manual search of vehicles, putting personnel at high risk. We have built a prototype, remotely controlled system to non-intrusively and non-destructively detect explosives with a vehicle inspection time of between 2 and 5 min. The system utilizes a neutron generator and high-purity germanium (HPGe) detectors housed in moving components that scan the entire vehicle and allow for a single location rescan. The neutron generator operates at ~10~8 neutrons per second resulting in extremely small induced radiation levels and low exposure to possible stowaways. A control software operator interface is fully automated for remote operation of the hardware components and execution of the data analysis and threat algorithm with no operator intervention. Studies have been completed to characterize the performance of the system as a function of the weight of explosive within a complete set of vehicles. The underlying physical concepts of the system development are presented.
机译:车载简易爆炸装置对政府设施,经济中心和公众构成重大风险。大规模爆炸装置的爆炸是一种全球现象。目前,检查站操作要求手动搜索车辆,使人员处于高风险中。我们建立了一个原型的远程控制系统,以2至5分钟的车辆检查时间非侵入性和非破坏性地检测爆炸物。该系统利用中子发生器和安装在运动部件中的高纯锗(HPGe)检测器来扫描整个车辆,并允许对单个位置进行重新扫描。中子发生器以每秒约10〜8个中子的速度运行,从而导致极小的感应辐射水平和对可能的偷渡者的低暴露。控制软件的操作员界面是完全自动化的,无需硬件干预即可远程操作硬件组件以及执行数据分析和威胁算法。已经完成了研究,以根据整套车辆中炸药的重量来确定系统的性能。介绍了系统开发的基本物理概念。

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