位置:成果数据库 > 期刊 > 期刊详情页
不确定分数阶混沌系统的滑模投影同步
  • 期刊名称:浙江大学学报(工学版),44(7):1287-1291,2010
  • 时间:0
  • 分类:TP391.9[自动化与计算机技术—计算机应用技术;自动化与计算机技术—计算机科学与技术] O415.5[理学—理论物理;理学—物理]
  • 作者机构:[1]College of Information Science and Engineering, Northeastern University, Shenyang 110004, China, [2]Department of Automatic Control Engineering, Shenyang Institute of Engineering, Shenyang 110136, China
  • 相关基金:Project supported by the National Natural Science Foundation of China (Grant Nos. 60904046, 60972164, 60974071, and 60804006), the Special Fund for Basic Scientific Research of Central Colleges, Northeastern University, China (Grant No. 090604005), the Science and Technology Program of Shenyang (Grant No. Fll-264-1-70), the Program for Liaoning Excellent Talents in University (Grant No. LJQ2011137), and the Program for Lia~ning Innovative Research Team in University (Grant No. LT2011019).
  • 相关项目:分数阶混沌系统自适应镇定与同步方法研究
中文摘要:

The networked synchronization problem of a class of master-slave chaotic systems with time-varying communication topologies is investigated in this paper. Based on algebraic graph theory and matrix theory, a simple linear state feedback controller is designed to synchronize the master chaotic system and the slave chaotic systems with a time- varying communication topology connection. The exponential stability of the closed-loop networked synchronization error system is guaranteed by applying Lyapunov stability theory. The derived novel criteria are in the form of linear matrix inequalities (LMIs), which are easy to examine and tremendously reduce the computation burden from the feedback matrices. This paper provides an alternative networked secure communication scheme which can be extended conveniently. An illustrative example is given to demonstrate the effectiveness of the proposed networked synchronization method.

英文摘要:

The networked synchronization problem of a class of master-slave chaotic systems with time-varying communication topologies is investigated in this paper. Based on algebraic graph theory and matrix theory, a simple linear state feedback controller is designed to synchronize the master chaotic system and the slave chaotic systems with a time- varying communication topology connection. The exponential stability of the closed-loop networked synchronization error system is guaranteed by applying Lyapunov stability theory. The derived novel criteria are in the form of linear matrix inequalities (LMIs), which are easy to examine and tremendously reduce the computation burden from the feedback matrices. This paper provides an alternative networked secure communication scheme which can be extended conveniently. An illustrative example is given to demonstrate the effectiveness of the proposed networked synchronization method.

同期刊论文项目
期刊论文 18 会议论文 14 获奖 1 著作 2
同项目期刊论文