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首页> 外文期刊>International Journal of Distributed Sensor Networks >Secure state estimation and attack reconstruction for cyber-physical system with intermediate and robust observer
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Secure state estimation and attack reconstruction for cyber-physical system with intermediate and robust observer

机译:中间稳健观察者网络物理系统的安全状态估计与攻击重建

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An intermediate and robust observer is presented in this article to robustly estimate secure state and reconstruct actuator attack for continuous-time/discrete-time cyber-physical system. First, we propose a general form of cyber-physical system under actuator attack and external disturbance, and then some assumptions are stated in order to facilitate further research. Second, a novel intermediate and robust observer is designed, based on which an augmented error equation is deduced, necessary and sufficient conditions for continuous-time/discrete-time cyber-physical system to obtain gain matrices are derived separately. Third, strict linear matrix inequality conditions are deduced by transforming the original problem into convex optimization problem. Finally, we conduct two simulation experiments with continuous-time and discrete-time unmanned ground vehicle model to show the effectiveness of the proposed secure state estimation and attack reconstruction approach.
机译:本文向中间和强大的观察者介绍,以强大地估计安全状态并重建用于连续时间/离散时间网络物理系统的致动器攻击。首先,我们提出了一种在执行器攻击和外部干扰下的网络物理系统的一般形式,然后说明了一些假设,以便于进一步研究。其次,设计了一种新的中间和鲁棒观察者,基于推导出增强的误差方程,对于导出的连续时间/离散时间网络物理系统来获得增益矩阵的必要和充分条件。第三,通过将原始问题转换为凸优化问题来推导出严格的线性矩阵不等式条件。最后,我们用连续时间和离散时间无人机模型进行两台模拟实验,以表明提出的安全状态估计和攻击重建方法的有效性。

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