Liyuan Yin
Papers
3
Total Citations
58
H-Index
3
About
Liyuan Yin is an emerging researcher specializing in cybersecurity and control theory for cyber-physical systems (CPSs), with a particular focus on resilient system design under adversarial network conditions. Their work addresses one of the most pressing challenges in modern networked control: ensuring stable and reliable system performance in the face of Denial-of-Service (DoS) attacks that disrupt critical communication channels between controllers and actuators. Yin's most significant contributions center on developing robust control frameworks that account for both periodic and aperiodic DoS attack models, realistically incorporating the finite energy constraints of malicious adversaries. Their 2023 paper on periodic DoS attacks has already garnered 23 citations, while subsequent work on aperiodic attack scenarios and event-triggered secure control mechanisms has collectively accumulated an additional 35 citations — a remarkable output for publications less than two years old. Notably, their introduction of event-triggered control strategies represents an innovative approach to reducing unnecessary communication overhead while maintaining security guarantees. Yin's research is particularly valuable to students and engineers working at the intersection of control engineering and cybersecurity, offering practical, mathematically rigorous tools for designing next-generation resilient cyber-physical systems in critical infrastructure applications.
Research Focus
Key Achievements
Top Papers
- 1Security Analysis and Control Under Periodic DoS Attacks23 citations · 2023
- 2Event-Triggered Secure Control Under Aperiodic DoS Attacks19 citations · 2024
- 3Secure Control for Cyber–Physical Systems Subject to Aperiodic DoS Attacks16 citations · 2024