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Secure Distributed Finite-Time Filtering for Positive Systems Over Sensor Networks Under Deception Attacks

机译:在欺骗攻击下对传感器网络的正系统安全分布有限时间过滤

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This paper is concerned with secure ${ell _{1}}$ -gain performance analysis and distributed finite-time filter design for a positive discrete-time linear system over a sensor network in the presence of deception attacks. A group of intercommunicating sensors is densely deployed to measure, gather, and process the output of the positive system. Each sensor is capable of sharing its measurement with its neighboring sensors in accordance with a prescribed network topology while suffering from random communication link failure. Meanwhile, the aggregated measurement on each sensor during network transmission is corrupted by stochastic deception attacks which compromise the sensor's measurement integrity. First, a unified sensor measurement transmission model is put forward to account for the simultaneous presence of deception attacks and various network-induced constraints. Second, delicate secure distributed filters are constructed by admitting the corrupted sensor measurement. Third, theoretical analysis on finite-time ${ell _{1}}$ -gain boundedness of the filtering error system and design of desired positive filters are carried out. The solution to the filter gain parameters is characterized by a set of linear programming inequalities. Finally, the effectiveness of the obtained results is verified through the secure monitoring of power distribution in the smart grid.
机译:本文涉及安全$ { _ {1}} $ -Gain性能分析和分布式有限时间过滤器设计,用于在存在欺骗攻击的传感器网络上通过传感器网络进行正离散时间线性系统。一组互通传感器被密集地部署以测量,聚集和处理正系统的输出。每个传感器能够根据规定的网络拓扑分享其相邻传感器的测量,同时遭受随机通信链路故障。同时,在网络传输期间每个传感器的聚合测量由随机欺骗攻击损坏,随机欺骗攻击损害了传感器的测量完整性。首先,提出统一的传感器测量传输模型以解释欺骗攻击的同时存在和各种网络诱导的约束。第二,通过承认损坏的传感器测量来构建精细安全分布式过滤器。第三,对有限时间$ { eLl _ {1}}的理论分析进行了滤波误差系统的$ -gain界限和所需正滤波器的设计。滤波器增益参数的解决方案的特征在于一组线性编程不等式。最后,通过在智能电网中的电力分布的安全监测来验证所获得的结果的有效性。

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