返回
Adaptive Quantized Control for Markov Jump Systems Against Multimode False Data Injection Attack
DOI:10.1049/cth2.70082.png)
摘要
En 中文
This study addresses the adaptive dynamic quantization control problem for Markov jump systems (MJSs) subject to multimode injection attack (IA). For the controlled system, the Markov chain and multimode IA, modelled as a categorical-distributed stochastic process, are jointly characterized by a hidden Markov model. Firstly, a sliding mode controller without quantization signals is designed and a mode-dependent Lyapunov function is constructed to establish the exponential ultimate boundedness condition of the MJSs. And then, under the frame that the state signal is quantized before transmitted to controller, an adaptive dynamic quantization strategy is further proposed such that the above controller can achieve the same control performance as the non-quantized case, eliminating the need for re-designing new controller. Finally, simulation results validate the effectiveness and robustness of the proposed quantized control strategy under combined dynamic quantization and IA scenarios.
Keyword:
dynamic quantizer
injection attacks
Markov jump systems
sliding mode control
AI总结
对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。
期刊
IF:
2.3
论文数:
76
被引数:
6.8K
机构
引用论文
Self‐triggered consensus of multi‐agent systems with quantized relative state measurements多智能体系统的自触发共识问题研究(基于量化相对状态测量)
Moving-horizon false data injection attack design against cyber-physical systems针对网络物理系统的移动地平线虚假数据注入攻击设计
Asynchronous Control for Switched T-S Fuzzy Systems Subject to Data Injection Attacks via Adaptive Event-Triggering Schemes通过自适应事件触发方案对受数据注入攻击的切换t-s模糊系统进行异步控制
Dynamic-memory event-based asynchronous security control for positive singular semi-Markov jumping CPSs against multiple cyber-attacks针对多重网络攻击的正奇异半马尔可夫跳跃CPS的动态内存事件触发异步安全控制
Asynchronous Secure Control for Singular Nonhomogeneous Markov Jump Cyber-Physical Systems Against Dual Cyber-Attacks异步安全控制用于奇异非齐次马尔可夫跳变信息物理系统,以抵御双重网络攻击

