服务拒绝攻击
网络拓扑
拒绝
国家(计算机科学)
事件(粒子物理)
计算机科学
服务(商务)
估计
拓扑(电路)
分布式计算
计算机网络
心理学
工程类
业务
算法
物理
电气工程
万维网
互联网
系统工程
量子力学
营销
精神分析
作者
Hanqing Qu,Hong Sang,Zhengbao Cao
摘要
ABSTRACT This article investigates the state estimation problem (SEP) for complex networks (CNs) with switching topologies subject to denial‐of‐service (DoS) attacks, utilizing an event‐triggering strategy to reduce data transmissions. It is noteworthy that DoS attacks may occur not only on topology channels but also on output channels. Different from previous works in which DoS attack behavior follows Bernoulli distribution, this article employs a more general deterministic DoS model. To achieve state estimation under these conditions, we develop an extended Kalman filter (EKF) that switches between two different dynamics and derive a piecewise Riccati‐like difference equation whose solution provides an upper bound matrix for the estimation error covariance (EEC). Subsequently, a criterion is established to ensure that the estimation error (EE) remains bounded in mean square in the presence of DoS. We derive a duty cycle for DoS attacks below which the boundedness of the EE is maintained. Finally, the effectiveness of our algorithm is certified by a simulation example.
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