Papers
3
Total Citations
188
H-Index
3
About
Dong Yue is a leading researcher in networked control systems, cyber-physical security, and multi-agent robotics. His most influential work, "Memory-Based Continuous Event-Triggered Control for Networked T–S Fuzzy Systems Against Cyberattacks" (2020, 132 citations), introduces a novel memory-based event-triggering mechanism that leverages past system information via a window function to achieve resilient control under bounded cyberattacks. This breakthrough addresses critical vulnerabilities in fuzzy control systems, offering a robust defense against malicious interference. Yue has also made foundational contributions to multi-robot coordination, as seen in his studies on cooperative path following (2017, 29 citations) and distributed consensus of nonholonomic mobile robots (2014, 27 citations). In these works, he elegantly simplifies complex consensus problems into subsystems, enabling linear distributed controllers for practical deployment. His research bridges theoretical rigor with real-world challenges, advancing the reliability of autonomous systems in adversarial environments. With a career marked by high-impact publications and a focus on security-resilient control, Yue continues to shape the future of intelligent, networked robotics and cyber-physical systems.
Research Focus
Key Achievements
Top Papers
- 1
- 2Cooperative path following control of multiple nonholonomic mobile robots29 citations · 2017
- 3Distributed consensus of multiple nonholonomic mobile robots27 citations · 2014