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Optimizing the signal-to-noise ratio for the PELAN system

机译:优化PELAN系统的信噪比

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摘要

Pulsed elemental analysis with neutrons is a portable system for the detection of explosives, weighing less than 45kg. It is based on the principle that explosives and other contraband contain various chemical elements such as H, C, N, O, etc. in quantities and ratios that differentiate them from other innocuous substances. Neutrons are produced with a pulsed 14 MeV (d-T) neutron generator. Separate gamma-ray spectra from fast neutron, thermal neutron and activation reactions are accumulated and analyzed to determine elemental content. Currently, a 7.6cm x 7.6cm BGO detector is incorporated into the design. However, the high γ-ray efficiency of this detector has a drawback in that it detects γ-rays from the environment surrounding the object under interrogation. These γ-rays from the environment are essentially noise that must be filtered from the signal from the object under interrogation. Since there is no practical way to focus the neutrons, the signal-to-noise ratio of the detector must be modified. In the past 2 years, we have tried several approaches to solve this problem.
机译:中子脉冲元素分析是一种便携式系统,可检测重量小于45kg的爆炸物。它基于这样的原理:炸药和其他违禁品含有各种化学元素,例如H,C,N,O等,其数量和比例使它们与其他无害物质区分开。中子由脉冲14 MeV(d-T)中子发生器产生。累积并分析了来自快中子,热中子和活化反应的单独的伽马射线光谱,并确定元素含量。目前,设计中集成了7.6cm x 7.6cm BGO检测器。然而,这种探测器的高γ射线效率具有一个缺点,即它从被询问的物体周围的环境中探测到γ射线。这些来自环境的γ射线本质上是噪声,必须从受到询问的物体发出的信号中滤除它们。由于没有使中子聚焦的实际方法,因此必须修改探测器的信噪比。在过去的两年中,我们尝试了几种方法来解决此问题。

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