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Determining Tolerable Attack Surfaces that Preserves Safety of Cyber-Physical Systems

机译:确定可以保留网络物理系统安全性的可容忍攻击面

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摘要

As safety-critical systems become increasingly interconnected, a system's operations depend on the reliability and security of the computing components and the interconnections among them. Therefore, a growing body of research seeks to tie safety analysis to security analysis. Specifically, it is important to analyze system safety under different attacker models. In this paper, we develop generic parameterizable state automaton templates to model the effects of an attack. Then, given an attacker model, we generate a state automaton that represents the system operation under the threat of the attacker model. We use a railway signaling system as our case study and consider threats to the communication protocol and the commands issued to physical devices. Our results show that while less skilled attackers are not able to violate system safety, more dedicated and skilled attackers can affect system safety. We also consider several countermeasures and show how well they can deter attacks.
机译:随着安全关键型系统之间的互连越来越紧密,系统的操作取决于计算组件及其之间的互连的可靠性和安全性。因此,越来越多的研究试图将安全性分析与安全性分析联系起来。特别是,分析不同攻击者模型下的系统安全性很重要。在本文中,我们开发了通用的可参数化状态自动机模板来对攻击的影响进行建模。然后,在给定攻击者模型的情况下,我们生成一个状态自动机,该状态自动机表示受到攻击者模型威胁的系统操作。我们将铁路信号系统用作案例研究,并考虑对通信协议和发布给物理设备的命令的威胁。我们的结果表明,虽然技能水平较低的攻击者无法破坏系统安全性,但敬业度较高和技能水平较高的攻击者会影响系统安全性。我们还考虑了几种对策,并展示了它们可以很好地阻止攻击。

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