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Cyber-Physical Security: A Game Theory Model of Humans Interacting Over Control Systems

机译:网络物理安全:人与控制系统互动的博弈模型

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Recent years have seen increased interest in the design and deployment of smart grid devices and control algorithms. Each of these smart communicating devices represents a potential access point for an intruder spurring research into intruder prevention and detection. However, no security measures are complete, and intruding attackers will compromise smart grid devices leading to the attacker and the system operator interacting via the grid and its control systems. The outcome of these machine-mediated human-human interactions will depend on the design of the physical and control systems mediating the interactions. If these outcomes can be predicted via simulation, they can be used as a tool for designing attack-resilient grids and control systems. However, accurate predictions require good models of not just the physical and control systems, but also of the human decision making. In this manuscript, we present an approach to develop such tools, i.e., models of the decisions of the cyber-physical intruder who is attacking the systems and the system operator who is defending it, and demonstrate its usefulness for design.
机译:近年来,人们对智能电网设备和控制算法的设计和部署越来越感兴趣。这些智能通信设备中的每一个都代表入侵者的潜在接入点,从而促进了对入侵者预防和检测的研究。但是,尚无完善的安全措施,入侵者会破坏智能电网设备,导致攻击者与系统操作员通过电网及其控制系统进行交互。这些机器介导的人机交互的结果将取决于介导交互的物理和控制系统的设计。如果可以通过仿真预测这些结果,则可以将它们用作设计具有攻击力的电网和控制系统的工具。但是,准确的预测不仅需要物理和控制系统的良好模型,还需要人为决策的良好模型。在本手稿中,我们提出了一种开发此类工具的方法,即攻击系统的网络物理入侵者和防御系统的系统运营商的决策模型,并展示了其对设计的有用性。

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