Cybersecurity Advancements in Critical Infrastructure

The field of cybersecurity is moving towards more proactive and adaptive approaches to protect critical infrastructure from evolving threats. Recent research has focused on developing systematic frameworks for estimating security posture, game-theoretic resilience frameworks, and real-time decision support systems for mitigating cyber incidents. These innovative approaches aim to provide comprehensive overviews of system vulnerabilities, optimize defense strategies, and enhance incident response. Notable papers in this area include: A Systematic Approach to Estimate the Security Posture of a Cyber Infrastructure, which introduces a mission-centric approach to estimate and analyze security posture. Game Theoretic Resilience Recommendation Framework for CyberPhysical Microgrids Using Hypergraph MetaLearning, which presents a physics-aware cyberphysical resilience framework for radial microgrids under coordinated cyberattacks.

Sources

A Systematic Approach to Estimate the Security Posture of a Cyber Infrastructure: A Technical Report

Game Theoretic Resilience Recommendation Framework for CyberPhysical Microgrids Using Hypergraph MetaLearning

Bayesian and Multi-Objective Decision Support for Real-Time Cyber-Physical Incident Mitigation

Are Enterprises Ready for Quantum-Safe Cybersecurity?

A Kolmogorov-Arnold Network for Interpretable Cyberattack Detection in AGC Systems

What is Cybersecurity in Space?

Game-Theoretic Resilience Framework for Cyber-Physical Microgrids using Multi-Agent Reinforcement Learning

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