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Output Feedback Secure Control for Fully Quantized Nonlinear Systems Under Irregular Input/Output DoS Attacks

delete2025-08-01
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PRE
AI
高镇 cover
高镇 (Zhen Gao)
宋永端 cover
宋永端 (Yongduan Song)
F
Frank L. Lewis
DOI:10.1109/TSMC.2025.3565513delete
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Abstract

Abstract

En 中文
This article investigates the stability of fully quantized nonlinear systems under irregular denial-of-service (IDoS) attacks with unpredictable targets and frequencies. Unlike most existing works that focus only on DoS attacks in fixed or single-type channels, this work considers a more general attack mode, where attacks can occur in the input, output, or both simultaneously. During an attack, the signal in the affected channel is interrupted, rendering it inaccessible. Even if the system is safe, only quantized output signal is available. To address this, a novel state estimator is designed that switches different observer gains depending on the attacked channel. On this basis, we develop an output-feedback adaptive control algorithm that utilizes the estimated signals and incorporates a dynamic filtering technique. The control strategy effectively resists IDoS attacks, ensuring that all closed-loop signals remain semiglobally uniformly ultimately bounded (SUUB), and the stability error converges to a small residual set near the origin. Numerical simulation further confirmed the advantages and effectiveness of the proposed scheme.
Keywords:
Irregular denial-of-service (IDoS) attacks
nonlinear systems
output-feedback control
quantized states

Journal

IEEE Transactions on Cybernetics cover
IEEE Transactions on Cybernetics
IF:
10.5
Papers:
1.1W
Citations:
5.0W

Organization

C
Chongqing University
Scholars:
5.1W
Papers: 4.1W
Citations: 6.0W
U
University of Texas at Arlington
Scholars:
258
Papers: 150
Citations: 0