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EPIC: A Testbed for Scientifically Rigorous Cyber-Physical Security Experimentation

机译:EPIC:科学严谨的网络物理安全性试验的测试平台

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Recent malware, like Stuxnet and Flame, constitute a major threat to networked critical infrastructures (NCIs), e.g., power plants. They revealed several vulnerabilities in today's NCIs, but most importantly they highlighted the lack of an efficient scientific approach to conduct experiments that measure the impact of cyber threats on both the physical and the cyber parts of NCIs. In this paper, we present EPIC, a novel cyber-physical testbed, and a modern scientific instrument that can provide accurate assessments of the effects that cyber-attacks may have on the cyber and physical dimensions of NCIs. To meet the complexity of today's NCIs, EPIC employs an Emulab-based testbed to recreate the cyber part of NCIs and multiple software simulators for the physical part. Its main advantage is that it can support very accurate, real-time, repeatable, and realistic experiments with heterogeneous infrastructures. We show through several case studies how EPIC can be applied to explore the impact that cyber-attacks and Information and Communications Technology system disruptions have on critical infrastructures.
机译:最近的恶意软件(例如Stuxnet和Flame)构成了对网络关键基础设施(NCI)(例如发电厂)的主要威胁。他们揭示了当今NCI中的几个漏洞,但最重要的是,他们强调缺乏有效的科学方法来进行测量网络威胁对NCI物理和网络部分的影响的实验。在本文中,我们介绍了EPIC,这是一种新颖的网络物理测试平台,也是一种现代科学仪器,可以准确评估网络攻击可能对NCI的网络和物理维度产生的影响。为了满足当今NCI的复杂性,EPIC使用了基于Emulab的测试平台来重新创建NCI的网络部分,并为物理部分创建了多个软件模拟器。它的主要优点是可以使用异构基础结构支持非常准确,实时,可重复和逼真的实验。通过几个案例研究,我们将展示如何应用EPIC来探索网络攻击以及信息和通信技术系统中断对关键基础架构的影响。

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