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    Ren Tao, Zhu Zhi-Liang, Yu Hai, Wang Meng
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    • For the chaotic systems with disturbance, a sampled-data controller is designed to achieve chaotic synchronization. Firstly, to handle the discontinuity introduced by the sampling activities, the input-delay approach is introduced to transform the discontinuous chaotic systems into continuous ones. Secondly, the worst possible case of performance is considered according to min-max robust strategy. Then the sufficient conditions for global asymptotic synchronization of such chaotic systems are derived and expressed in terms of linear matrix inequality (LMI). The proposed algorithm can achieve synchronization of the sampled-data chaotic systems for all admissible disturbances at the pre-computed set of disturbance realizations. The effectiveness is finally illustrated via numerical simulations of chaotic Chuas circuit, and the simulation results show that the proposed algorithm is suitable for secure communication.
        • Funds:Project supported by the Young Scientists Fund of the National Natural Science Foundation of China (Grant No. 61104074), the China Postdoctoral Science Foundation (Grant Nos. 20100471462, 2013T60294), the Fundamental Research Funds for the Central Universities of Ministry of Education of China (Grant Nos. N100317002, N100604007, N110417004, N110417005, N110617001), and the Scientific Research Foundation for Doctor of Liaoning Province, China (Grant No. 20101032).
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      Metrics
      • Abstract views:5234
      • PDF Downloads:445
      • Cited By:0
      Publishing process
      • Received Date:27 April 2013
      • Accepted Date:22 May 2013
      • Published Online:05 September 2013

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