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Worst-Case Innovation-Based Integrity Attacks With Side Information on Remote State Estimation

机译:基于远程状态估计的附带信息的基于最坏情况创新的完整性攻击

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摘要

In this paper, we study the worst-case consequence of innovation-based integrity attacks with side information in a remote state estimation scenario where a sensor transmits its measurement to a remote estimator equipped with a false-data detector. If a malicious attacker is not only able to compromise the transmitted data packet but also able to measure the system state itself, the attack strategy can be designed based on the intercepted data, the sensing data, or alternatively the combined information. Surprisingly, we show that launching attacks using the combined information are not always optimal. First, we characterize the stealthiness constraints for different types of attack strategies to avoid being noticed by the false-data detector. Then, we derive the evolution of the remote estimation error covariance in the presence of attacks, based on which the worst-case attack policies are obtained by solving convex optimization problems. Furthermore, the closed-form expressions of the worst-case attacks are obtained for scalar systems and the attack consequences are compared with the existing work to determine which strategy is more critical in deteriorating system performance. Simulation examples are provided to illustrate the analytical results.
机译:在本文中,我们研究了在远程状态估计的情况下,带有边信息的基于创新的完整性攻击的最坏情况,在这种情况下,传感器将其测量结果传输到配备了错误数据检测器的远程估计器。如果恶意攻击者不仅能够破坏传输的数据包,而且能够测量系统状态本身,则可以基于拦截数据,感测数据或组合信息来设计攻击策略。令人惊讶的是,我们证明了使用组合信息发起的攻击并非总是最佳的。首先,我们描述了不同类型攻击策略的隐身约束,以避免被错误数据检测器发现。然后,我们推导了存在攻击时远程估计误差协方差的演化,在此基础上,通过解决凸优化问题获得了最坏情况的攻击策略。此外,针对标量系统获得了最坏情况攻击的闭式表达式,并将攻击结果与现有工作进行了比较,以确定哪种策略对降低系统性能更为关键。提供了仿真示例来说明分析结果。

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