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Hannover E.V.

 
 

Zhi LiZhi Li


Dr. Zhi Li is a Level-2 Professor and Ph.D. Supervisor at Xidian University, where he leads the discipline of Control Science and Engineering. He is a Deputy Director of Complex Systems Research Center and a Director of Complex Intelligent Network Research Team. Additionally, he is a Guest Editor of a special issue of journal Mathematics, Advance in Control Theory and Optimization, and a Conference Chairman of the 18th China Networks Science Forum.

Professor Li has made significant innovative contributions in several research aspects, including the theory and application of complex network synchronization control, cooperative control theory of multi-agent systems, evolutionary game theory of dynamic systems, quantum networks and quantum information, and intelligent positioning based on deep learning. Notably, he was the first internationally to propose a robust adaptive synchronization method for complex uncertain dynamic networks, addressing the synchronization issue for nodes with nonlinear dynamics and unknown nonlinear coupling functions to any desired state. He was among the first to suggest utilizing the eigenvalues of the connectivity topology matrix of the networks as a measure of a complex dynamic network's synchronization capability, uncovering the synchronization mechanisms of symmetric coupling, asymmetric coupling, and coupling with time delays. He innovatively combined multi-dimensional data with deep learning and meta-learning for adaptive modeling and analysis, effectively solving the adaptability, robustness, and precision positioning problems of learning models. He revealed the group evolutionary mechanisms of prisoner's dilemma, public goods, and ultimatum games on complex networks and was the first to discover the nonlinear characteristics of two-strategy games internationally, elucidating the evolutionary mechanism of optimal group strategies. For various quantum network structures, he developed efficient multiparty quantum key protocols, settling the security and accuracy issues in quantum key distribution. He proposed containment control protocols for multi-agent systems with different constraints and bounded disturbances, theoretically refining the analysis and proof methods for achieving containment control in multi-agent systems with switching topologies. He also developed control protocols for finite-time consensus in multi-agent systems with directed switching topologies and constraints, relaxing the assumptions and providing clear analysis and proofs.

Professor Li has published over 110 academic papers, including more than 70 SCI journal articles and 30 conference papers. His work has been cited more than 5,000 times by Google Scholar, with a single paper reaching a highest citation count of 366. He has over 1,000 SCI non-self citations, including one paper that was selected as an ESI Highly Cited Paper for ten consecutive years, with 208 SCI non-self citations. He has received awards for his outstanding doctoral dissertation from Xi'an Jiaotong University and the Shaanxi Province in China. He has obtained three copyrights for software related to complex system modeling and cooperative control. He has supervised and mentored 16 Ph.D. students and 85 Master's students.

Professor Li has successfully led over 20 projects supported by the National Natural Science Foundation of China, including four general programs of the National Natural Science Foundation of China, one major scientific and technological special sub-project of the State Administration of Science, Technology and Industry for National Defense,PRC and one Ph.D. Programs Foundation of Ministry of Education of China. He has also achieved notable research results in modeling, analysis, control, and experimental verification of national major equipment.

Professor Li serves as a meeting evaluation expert for the National Natural Science Foundation of China, a monograph review expert of the National Natural Science Foundation of China and a communication review expert for joint key projects and the National Excellent Youth Science Fund. Additionally, he is a member of Technical Committee on Control Theory (TCCT) of Chinese Association of Automation (CAA), a member of Complex Network and Complex System Special Committee of China Society for Industrial and Applied Mathematics (CSIAM), a member of Intelligent Internet of Things System Special Committee of China Simulation Federation (CSF), a member of Guidance, Navigation and Control Special Committee of CAA, a member of Multi-agent Control Study Group of CAA, an associate member of Chaos Control and Network Center of City University of Hong Kong, a guest speaker at the 3rd Frontier Forum on Control, Privacy and Security for Cyber-Physical Systems (CPS).



 

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