Papers
7
Total Citations
174
H-Index
6
About
Dr. Huan Su is a leading figure in the control and synchronization of complex networks, specializing in the development of advanced event-triggered and intermittent control strategies. Her work addresses critical challenges in network stability, particularly for stochastic, time-varying, and heterogeneous systems. Dr. Su’s major contributions include pioneering the concept of delay event-triggered control, which optimizes signal updates to enhance network stability, and integrating aperiodically intermittent pinning control with event-triggered mechanisms for efficient synchronization. She has also advanced the field by designing resilient control frameworks that mitigate deception attacks and volatile discrete-time observations, ensuring robust performance in large-scale networks. Her most cited work, “Bipartite synchronization of signed networks via aperiodically intermittent control based on discrete-time state observations” (2021), has garnered 83 citations, reflecting its significant impact. With over 170 citations across her publications, Dr. Su’s innovative approaches—such as combining intermittent control with event-triggered mechanisms and addressing time delays in multilinked networks—have set new standards for stability and synchronization in complex systems, making her research essential for students and engineers working on networked control and cyber-physical systems.
Research Focus
Key Achievements
Top Papers
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- 2Delay Event-Triggered Control for Stability Analysis of Complex Networks36 citations · 2022
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