模拟在全球多式联运网络上走私放射性和特殊核材料的最可能途径

K. Saeger, L. Cuéllar
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引用次数: 1

摘要

核武器扩散是一个既存且日益严重的世界性问题。为协助制定战略和支持决策,以拦截核材料的运输,我们开发了途径分析、威胁应对和拦截选项工具(PATRIOT),提供了一种分析方法,以评估敌方走私放射性或特殊核材料在运输过程中被发现的可能性。我们整合了一个全球性的多式联运网络,明确表示设计和偶然的检测机会,以及多种威胁设备,材料类型和屏蔽级别。本文介绍了爱国者的总体结构,并重点介绍了用于对所有网络组件的可靠性进行建模的理论框架,这些组件用于预测最可能到达目标的路径。
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Modeling most likely pathways for smuggling radioactive and special nuclear materials on a worldwide multimodal transportation network
Nuclear weapons proliferation is an existing and growing worldwide problem. To help with devising strategies and supporting decisions to interdict the transport of nuclear material, we developed the Pathway Analysis, Threat Response and Interdiction Options Tool (PATRIOT) that provides an analytical approach for evaluating the probability that an adversary smuggling radioactive or special nuclear material will be detected during transit. We incorporate a global, multi-modal transportation network, explicit representation of designed and serendipitous detection opportunities, and multiple threat devices, material types, and shielding levels. This paper presents the general structure of PATRIOT, and focuses on the theoretical framework used to model the reliabilities of all network components that are used to predict the most likely pathways to the target.
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