Exponential synchronization of complex networks with nonidentical time-delayed dynamical nodes |
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Authors: | Shuiming Cai Qinbin He Junjun Hao |
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Affiliation: | a Department of Mathematics, Shanghai University, Shanghai 200444, China b Institute of System Biology, Shanghai University, Shanghai 200444, China c Department of Mathematics, Taizhou University, Linhai 317000, China |
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Abstract: | In this Letter, exponential synchronization of a complex network with nonidentical time-delayed dynamical nodes is considered. Two effective control schemes are proposed to drive the network to synchronize globally exponentially onto any smooth goal dynamics. By applying open-loop control to all nodes and adding some intermittent controllers to partial nodes, some simple criteria for exponential synchronization of such network are established. Meanwhile, a pinning scheme deciding which nodes need to be pinned and a simply approximate formula for estimating the least number of pinned nodes are also provided. By introducing impulsive effects to the open-loop controlled network, another synchronization scheme is developed for the network with nonidentical time-delayed dynamical nodes, and an estimate of the upper bound of impulsive intervals ensuring global exponential stability of the synchronization process is also given. Numerical simulations are presented finally to demonstrate the effectiveness of the theoretical results. |
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Keywords: | Exponential synchronization Complex dynamical networks Nonidentical time-delayed nodes Open-loop control Intermittent control Impulsive control |
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