服务拒绝攻击
事件(粒子物理)
残余物
计算机科学
控制理论(社会学)
探测器
断层(地质)
模糊逻辑
故障检测与隔离
控制(管理)
模糊控制系统
马尔可夫链
非线性系统
可靠性工程
工程类
算法
人工智能
电信
机器学习
互联网
物理
万维网
地质学
地震学
执行机构
量子力学
作者
Cheng Tan,Tongtong Ding,Ziran Chen,Hongtao Sun
摘要
Abstract This article addresses the problem of designing an event‐triggered fault detector within a networked nonlinear system described by a Takagi–Sugeno (T–S) fuzzy model, accounting for time‐varying delays and denial‐of‐service (DoS) attacks characterized by a binary Markov chain. Our focus is on constructing an event‐triggered residual system, which aims to detect malfunctions in the original fuzzy system while optimizing communication resource allocation. Specifically, it is tailored to combat DoS attacks in the event generator‐to‐fault detector channel and mitigate network‐induced time‐varying delays. Utilizing the Lyapunov–Krasovskii function approach, we formulate linear matrix inequalities to establish the necessary conditions ensuring the asymptotic mean‐square stability of the residual system, meeting a predefined performance criterion. Finally, the simulation results are presented to validate the effectiveness of the proposed algorithms.
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