Ruimei Zhang
Papers
2
Total Citations
25
H-Index
2
About
Ruimei Zhang is a rising researcher in the field of multi-agent systems (MASs) and secure control theory, with a focus on the resilience of networked dynamical systems under cyber threats. Her work primarily addresses the challenge of achieving consensus—a fundamental coordination goal—in systems governed by Euler–Lagrange (EL) dynamics, which model a wide range of mechanical and robotic systems. Zhang’s major contributions lie in developing novel distributed control protocols that ensure secure operation even when communication networks are compromised by denial-of-service (DoS) attacks. Her 2024 paper, “Secure Distributed Control for Consensus of Multiple EL Systems Subject to DoS Attacks,” has garnered 17 citations, introducing a joint control protocol that combines distributed sampled-data control with adaptive mechanisms to maintain leaderless consensus. Building on this, her 2025 work, “Secure Consensus for Multi-Agent Systems With Euler-Lagrange Dynamics and Multiple DoS Attacks,” with 8 citations, advances the field by modeling multiple, simultaneous DoS attacks and designing strategies to counteract their joint impact. Zhang’s research is pivotal for the safe deployment of autonomous swarms, robotic teams, and critical infrastructure, offering practical solutions for cybersecurity in distributed control systems. Her innovative approach to integrating discrete communication with adaptive resilience marks her as a key contributor to the next generation of secure, intelligent multi-agent networks.
Research Focus
Key Achievements
Top Papers
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