首页> 外文会议>2010 IEEE International Conference on Technologies for Homeland Security >Determination of optimal boundary for algorithmic method of plastic scintillator-based radiation detector against nuclear terrorism
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Determination of optimal boundary for algorithmic method of plastic scintillator-based radiation detector against nuclear terrorism

机译:基于塑料闪烁体的辐射探测器反核恐怖主义算法方法的最佳边界确定

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A plastic scintillator-based radiation portal monitoring system has played an important role in preventing and detecting illicit trafficking of nuclear and radioactive materials. The limited spectroscopic information of the plastic scintillator material makes it difficult to discriminate radioactive materials of concern from naturally occurring radioactive materials (NORM) or background radiation. This has an impact on operations and surveillance costs. Various studies including energy windowing algorithm have been conducted to deal with this problem. However, few papers have been published on how to determine the optimal boundary of energy windowing algorithm. This paper discusses the algorithmic method for a plastic scintillator-based radiation detection system and how to determine the optimal boundary of the energy windowing. Comparing the calculated and experimental results, it appeared that the algorithmic method using energy window boundary presented in this paper could improve the ability of a plastic scintillator-based radiation detection system to discriminate certain threat materials from NORM or background radiation. Furthermore, nuclear materials (natural and low-enriched uranium) which have the similar spectral distributions with ambient background radiation could also be separated from it.
机译:基于塑料闪烁体的辐射门户监测系统在防止和侦查非法贩运核材料和放射性物质方面发挥了重要作用。塑料闪烁体材料的有限的光谱信息使得难以将所关注的放射性材料与天然存在的放射性材料(NORM)或背景辐射区分开。这会影响运营和监控成本。为了解决这个问题,已经进行了包括能量窗算法在内的各种研究。但是,关于如何确定能量窗算法的最佳边界的文献很少。本文讨论了基于塑料闪烁体的辐射探测系统的算法方法,以及如何确定能量窗的最佳边界。比较计算结果和实验结果,看来本文提出的使用能量窗边界的算法方法可以提高基于塑料闪烁体的辐射探测系统从NORM或背景辐射中识别某些威胁物质的能力。此外,具有与周围背景辐射相似的光谱分布的核材料(天然铀和低浓铀)也可以从中分离出来。

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