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A model-driven approach for vulnerability evaluation of modern physical protection systems

机译:一种模型驱动的现代物理保护系统脆弱性评估方法

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摘要

Modern physical protection systems integrate a number of security systems (including procedures, equipments, and personnel) into a single interface to ensure an adequate level of protection of people and critical assets against malevolent human actions. Due to the critical functions of a protection system, the quantitative evaluation of its effectiveness is an important issue that still raises several challenges. In this paper we propose a model-driven approach to support the design and the evaluation of physical protection systems based on (a) UML models representing threats, protection facilities, assets, and relationships among them, and (b) the automatic construction of a Bayesian Network model to estimate the vulnerability of different system configurations. Hence, the proposed approach is useful both in the context of vulnerability assessment and in designing new security systems as it enables what-if and cost-benefit analyses. A real-world case study is further illustrated in order to validate and demonstrate the potentiality of the approach. Specifically, two attack scenarios are considered against the depot of a mass transit transportation system in Milan, Italy.IS
机译:现代的物理保护系统将许多安全系统(包括程序,设备和人员)集成到单个界面中,以确保对人员和重要资产提供足够级别的保护,以防恶意的人为行为。由于保护系统的关键功能,对其有效性进行定量评估是一个重要的问题,仍然提出了一些挑战。在本文中,我们提出了一种模型驱动的方法来支持物理保护系统的设计和评估,该方法基于(a)代表威胁,保护设施,资产及其之间关系的UML模型,以及(b)自动构建威胁贝叶斯网络模型可估计不同系统配置的脆弱性。因此,所提出的方法在漏洞评估和设计新的安全系统中都是有用的,因为它可以进行假设分析和成本效益分析。为了说明和证实这种方法的潜力,还对一个实际案例进行了说明。具体而言,针对意大利米兰的一个大众运输系统的仓库考虑了两种攻击场景。

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