A Game-Theoretic Approach to Secure Estimation and Control for Cyber-Physical Systems with a Digital Twin

Zhiheng Xu, A. Easwaran
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引用次数: 6

Abstract

Cyber-Physical Systems (CPSs) play an increasingly significant role in many critical applications. These valuable applications attract various sophisticated attacks. This paper considers a stealthy estimation attack, which aims to modify the state estimation of the CPSs. The intelligent attackers can learn defense strategies and use clandestine attack strategies to avoid detection. To address the issue, we design a Chi-square detector in a Digital Twin (DT), which is an online digital model of the physical system. We use a Signaling Game with Evidence (SGE) to find the optimal attack and defense strategies. Our analytical results show that the proposed defense strategies can mitigate the impact of the attack on the physical estimation and guarantee the stability of the CPSs. Finally, we use an illustrative application to evaluate the performance of the proposed framework.
具有数字孪生的信息物理系统安全估计与控制的博弈论方法
信息物理系统(cps)在许多关键应用中发挥着越来越重要的作用。这些有价值的应用程序吸引了各种复杂的攻击。本文考虑了一种隐身估计攻击,其目的是修改cps的状态估计。智能攻击者可以学习防御策略,并使用秘密攻击策略来避免被检测到。为了解决这个问题,我们在数字孪生体(DT)中设计了一个卡方检测器,这是物理系统的在线数字模型。我们使用带有证据的信号博弈(SGE)来寻找最佳的攻击和防御策略。分析结果表明,所提出的防御策略可以减轻攻击对物理估计的影响,并保证cps的稳定性。最后,我们使用一个说明性应用程序来评估所提出框架的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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