
Pinning Control of Complex Networked Systems
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Synchronization, consensus and flocking are ubiquitous requirements in networked systems.
Pinning Control of Complex Networked Systems
investigates these requirements by using the pinning control strategy, which aims to control the whole dynamical network with huge numbers of nodes by imposing controllers for only a fraction of the nodes. As the direct control of every node in a dynamical network with huge numbers of nodes might be impossible or unnecessary, it's then very important to use the pinning control strategy for the synchronization of complex dynamical networks. The research on pinning control strategy in consensus and flocking of multi-agent systems can not only help us to better understand the mechanisms of natural collective phenomena, but also benefit applications in mobile sensor/robot networks. This book offers a valuable resource for researchers and engineers working in the fields of control theory and control engineering.
Housheng Su
is an Associate Professor at the Department of Control Science and Engineering, Huazhong University of Science and Technology, China;
Xiaofan Wang
is a Professor at the Department of Automation, Shanghai Jiao Tong University, China.
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Persons
Xiaofan Wang received his B.Sc. degree in Mathematics from Suzhou University in 1986, his M.Sc. degree in Computational Mathematics from Nanjing Normal University, China in 1991, and his Ph.D. degree from Southeast University, China in 1996. Since 2002, he has been a Professor in the Department of Automation, Shanghai Jiao Tong University (SJTU). Since 2008, he has been a Distinguished Professor of SJTU. He received the 2002 National Science Foundation for Distinguished Young Scholars of P. R. China and the 2005 Guillemin-Cauer Best Transactions Paper Award from the IEEE Circuits and Systems Society. His current research interests include analysis and control of complex dynamical networks. He is a senior member of the IEEE.
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