网络物理系统的安全应急预测与响应

Erik Miehling, Cédric Langbort, T. Başar
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引用次数: 1

摘要

最近对网络物理系统的攻击的复杂性需要更有表现力的模型来预测和响应突发事件。在本文中,为了解决网络物理系统安全模型设计面临的主要困难,我们提出了一个通用模型,称为安全应急预测和响应(SCPR),它明确地将网络层的安全状态与物理系统的运行状态联系起来。这是通过将网络层的安全状态描述为攻击者通过攻击图的进展,并绘制攻击图中受损节点与物理层攻击者能力之间的对应关系来实现的。利用所提出的模型,我们提出了一种新的网络物理系统安全问题,称为控制感知入侵响应,其中网络层的行动考虑了物理系统的结构可控性。通过简要讨论该模型对一些基础网络物理系统安全问题的适用性,进一步说明了该模型的可表达性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secure Contingency Prediction and Response for Cyber-Physical Systems
The complex nature of recent attacks on cyber-physical systems calls for more expressive models for contingency prediction and response. In this paper, in an attempt to address the primary difficulties facing the design of models for cyber-physical systems security, we propose a general model, termed secure contingency prediction and response (SCPR), that explicitly links the security status of the cyber layer with the operational status of the physical system. This is achieved by describing the security status of the cyber layer as the progression of an attacker through an attack graph and drawing a correspondence between compromised nodes in the attack graph and attacker capabilities in the physical layer. Using the proposed model, we formulate a novel cyber-physical systems security problem, termed control-aware intrusion response, in which actions in the cyber layer take into account the structural controllability of the physical system. The expressiveness of the proposed model is further illustrated by briefly discussing its applicability to some foundational cyber-physical systems security problems.
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