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Detection of Sensor Attack and Resilient State Estimation for Uniformly Observable Nonlinear Systems having Redundant Sensors

机译:具有冗余传感器的一致可观测非线性系统的传感器攻击检测和弹性状态估计

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This paper presents a detection algorithm for sensor attacks and a resilient state estimation scheme for a class of uniformly observable nonlinear systems. An adversary is supposed to corrupt a subset of sensors with the possibly unbounded signals, while the system has sensor redundancy. We design an individual high-gain observer for each measurement output so that only the observable portion of the system state is obtained. Then, a nonlinear error correcting problem is solved by collecting all the information from those partial observers and exploiting redundancy. A computationally efficient, on-line monitoring scheme is presented for attack detection. Based on the attack detection scheme, an algorithm for resilient state estimation is provided. The simulation results demonstrate the effectiveness of the proposed algorithm.
机译:本文提出了一种针对传感器攻击的检测算法和一类可观测的非线性系统的弹性状态估计方案。对手应该使用可能不受限制的信号破坏一部分传感器,而系统具有传感器冗余。我们为每个测量输出设计一个单独的高增益观察器,以便仅获得系统状态的可观察部分。然后,通过收集来自那些部分观察者的所有信息并利用冗余来解决非线性纠错问题。提出了一种计算有效的在线监视方案,用于攻击检测。基于攻击检测方案,提供了一种弹性状态估计算法。仿真结果证明了该算法的有效性。

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