Su's book describes analysis and control against smart cyberattacks in discrete event systems (DES). This book is the first in the DES community to provide a thorough introduction of smart cyberattacks on supervisory control systems.
Su's book describes analysis and control against smart cyberattacks in discrete event systems (DES). This book is the first in the DES community to provide a thorough introduction of smart cyberattacks on supervisory control systems.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Rong Su, PhD, is a Professor at the School of Electrical and Electronic Engineering and Director of the Centre for System Intelligence and Efficiency at Nanyang Technological University. He earned a BE degree at the University of Science and Technology of China and an MAS degree and a PhD degree at the University of Toronto. Dr. Su is a senior member of IEEE and an associate editor for IEEE Transactions on Cybernetics, Automatica (IFAC), Journal of Discrete Event Dynamic Systems and Journal of Control and Decision. Dr. Su is prolifically published and has received several best paper awards, such as the 2021 Hsue-shen Tsien Paper Award from the IEEE/CAA Journal of Automatica Sinica and the Best Paper Award at the 15th International Conference on Advanced Systems in Public Transport (CASPT2022). He is an IEEE Distinguished Lecturer for the IEEE Robotics and Automation Society.
Inhaltsangabe
1. Introduction to Cybersecurity in Discrete Event Systems. Part I: Modeling and Synthesis of Smart Attacks. 2. Smart Sensor Attacks. 3. Smart Sensor-Actuator Attacks. 4. Smart Attacks with Unknown Supervisor. Part II: Modeling and Synthesis of Resilient Supervisors. 5. Resilient Supervisory Control against Smart Sensor Attacks. 6. System Vulnerability Analysis via Attack Model Reduction. 7. Supervisor Obfuscation against Smart Actuator Attacks.
1. Introduction to Cybersecurity in Discrete Event Systems. Part I: Modeling and Synthesis of Smart Attacks. 2. Smart Sensor Attacks. 3. Smart Sensor-Actuator Attacks. 4. Smart Attacks with Unknown Supervisor. Part II: Modeling and Synthesis of Resilient Supervisors. 5. Resilient Supervisory Control against Smart Sensor Attacks. 6. System Vulnerability Analysis via Attack Model Reduction. 7. Supervisor Obfuscation against Smart Actuator Attacks.
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