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Computational model for automatic cargo container inspection systems

机译:货柜自动检查系统的计算模型

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A US law mandating non-intrusive imaging and radiation detection by 2012 for 100% of US-bound containers at international ports has provoked widespread concern that the resulting congestion would hinder trade significantly. To address this issue, we present as a viable alternative an advanced computational model to implement computer automation for dual-energy X-ray imaging technique to detect and recognize nuclear and radiological material smuggled in cargo containers. Successful computer automation enables the dual-energy X-ray imaging technique to efficiently sense and recognize radiological and/or nuclear materials, especially shielded Highly Enriched Uranium (HEU), with high detection accuracy, a low positive-false-alarm rate, and negligible impact on freight movement. Thus, dual-energy X-ray inspection can feasibly be used to efficiently inspect 100% of cargo containers entering the US.
机译:美国一项法律规定,到2012年,必须对国际港口100%的美国集装箱进行非侵入式成像和辐射检测,这引起了广泛的关注,即由此造成的交通拥堵将严重阻碍贸易。为了解决这个问题,我们提出了一种先进的计算模型,作为可行的替代方案,以实现用于双能X射线成像技术的计算机自动化,以检测和识别走私在货物集装箱中的核材料和放射材料。成功的计算机自动化技术使双能X射线成像技术能够高效地感测和识别放射和/或核材料,尤其是屏蔽的高浓铀(HEU),具有很高的检测精度,低的误报率和可忽略不计对货运的影响。因此,可以使用双能X射线检查来有效地检查100%进入美国的货运集装箱。

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