Security Control for a Fuzzy System under Dynamic Protocols and Cyber-Attacks with Engineering Applications

计算机科学 可靠性(半导体) 弹性(材料科学) 信息物理系统 电力系统 分布式计算 关键基础设施 可靠性工程 控制工程 计算机安全 功率(物理) 工程类 量子力学 热力学 操作系统 物理
作者
Mourad Kchaou,Cecília Castro,Rabeh Abbassi,Víctor Leiva,Houssem Jerbi
出处
期刊:Mathematics [MDPI AG]
卷期号:12 (13): 2112-2112 被引量:1
标识
DOI:10.3390/math12132112
摘要

The objective of this study is to design a security control for ensuring the stability of systems, maintaining their state within bounded limits and securing operations. Thus, we enhance the reliability and resilience in control systems for critical infrastructure such as manufacturing, network bandwidth constraints, power grids, and transportation amid increasing cyber-threats. These systems operate as singularly perturbed structures with variables changing at different time scales, leading to complexities such as stiffness and parasitic parameters. To manage these complexities, we integrate type-2 fuzzy logic with Markov jumps in dynamic event-triggered protocols. These protocols handle communications, optimizing network resources and improving security by adjusting triggering thresholds in real-time based on system operational states. Incorporating fractional calculus into control algorithms enhances the modeling of memory properties in physical systems. Numerical studies validate the effectiveness of our proposal, demonstrating a 20% reduction in network load and enhanced stochastic stability under varying conditions and cyber-threats. This innovative proposal enables real-time adaptation to changing conditions and robust handling of uncertainties, setting it apart from traditional control strategies by offering a higher level of reliability and resilience. Our methodology shows potential for broader application in improving critical infrastructure systems.
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