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Distributed event-triggered state estimators design for sensor networked systems with deception attacks

机译:具有欺骗攻击的传感器网络系统的分布式事件触发状态估计器设计

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This study addresses the issue of distributed event-triggered H infinity state estimators subject to deception attacks for sensor networked systems. A decentralised event-triggered scheme (ETS) is introduced to determine whether the sampling data of each sensor is transmitted or not, respectively. In this scheme, each sensor node is independent to decide to deliver the local measurement output through the corresponding ETS. Due to the insertion of the network, the effect of the deception attacks along with time delay and packet dropouts are considered in this study. A novel estimator network is established to realise the estimation of the decoupling output measurements and coupling intercommunication measurements. Firstly, a distributed event-triggered H infinity estimating system with deception attacks is constructed in a mathematical model. Secondly, sufficient conditions are derived, which can ensure the stability of the designed H infinity estimating error systems and the related parameters of the desired distributed estimators are presented in an accurate form. Finally, a simulated example is given to demonstrate the effectiveness of the designed event-triggered distributed H infinity state estimator systems under the deception attacks.
机译:这项研究解决了传感器网络系统遭受欺骗攻击的分布式事件触发H无限状态估计器的问题。引入了分散事件触发方案(ETS)来分别确定是否传输每个传感器的采样数据。在此方案中,每个传感器节点都是独立的,以决定通过相应的ETS传递本地测量输出。由于网络的插入,本研究考虑了欺骗攻击的效果以及时间延迟和数据包丢失。建立了一种新颖的估计器网络,以实现对解耦输出测量和耦合互通测量的估计。首先,在数学模型中构造了具有欺骗攻击的分布式事件触发的H无限估计系统。其次,推导了充分的条件,可以确保所设计的H无穷大估计误差系统的稳定性,并以准确的形式呈现所需分布估计量的相关参数。最后,给出了一个仿真实例来说明所设计的事件触发的分布式H无限状态估计器在欺骗攻击下的有效性。

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