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Filter-based secure state estimation for linear time-varying systems under deception attacks

机译:欺骗攻击下线性时变系统基于滤波器的安全状态估计

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A filter-based secure scheme is investigated for a class of networked linear time-varying systems (NLTVS) under random deception attacks (RDA) in this paper. We assume that the deception attacks (DA) are governed by Bernoulli random variables. Based on the Kalman-type recursive filter structure, a secure state estimator is designed for the NLTVS. An upper bound of the estimation error covariance (EEC) is obtained by a recursive algorithm which can be minimized at each iteration with proper filter gains computed via a simplified matrix approach. A numerical simulation has been performed to verify the effectiveness of the filter-based secure scheme.
机译:在本文中对随机欺骗攻击(RDA)的一类网络线性时变系统(NLTV)研究了基于滤波器的安全方案。我们假设欺骗攻击(DA)由伯努利随机变量控制。基于卡尔曼型递归滤波器结构,设计了一个安全的状态估计器为NLTV设计。通过递归算法获得估计误差协方差(EEC)的上限,该递归算法可以通过通过简化的矩阵方法计算的每个迭代在每个迭代中最小化。已经执行了数值模拟以验证基于滤波器的安全方案的有效性。

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