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Optimal Linear Cyber-Attack on Remote State Estimation

机译:远程状态估计的最佳线性网络攻击

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摘要

Recent years have witnessed the surge of interest of security issues in cyber-physical systems. In this paper, we consider malicious cyber attacks in a remote state estimation application where a smart sensor node transmits data to a remote estimator equipped with a false data detector. It is assumed that all the sensor data can be observed and modified by the malicious attacker and a residue-based detection algorithm is used at the remote side to detect data anomalies. We propose a linear deception attack strategy and present the corresponding feasibility constraint which guarantees that the attacker is able to successfully inject false data without being detected. The evolution of the estimation error covariance at the remote estimator is derived and the degradation of system performance under the proposed linear attack policy is analyzed. Furthermore, we obtain a closed-form expression of the optimal attack strategy among all linear attacks. Comparison of attack strategies through simulated examples are provided to illustrate the theoretical results.
机译:近年来,目睹了物理网络系统中安全问题的兴趣激增。在本文中,我们考虑了在远程状态估计应用程序中的恶意网络攻击,在该应用程序中,智能传感器节点将数据传输到配备了错误数据检测器的远程估计器。假定恶意攻击者可以观察和修改所有传感器数据,并且在远程使用基于残差的检测算法来检测数据异常。我们提出了一种线性欺骗攻击策略,并提出了相应的可行性约束条件,以保证攻击者能够成功注入虚假数据而不会被检测到。推导了远程估计器上估计误差协方差的演化,并分析了所提出的线性攻击策略下系统性能的下降。此外,我们在所有线性攻击中获得了最佳攻击策略的闭式表达。通过仿真实例比较攻击策略,以说明理论结果。

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