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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A State-Observer-Based Approach for Synchronization in Complex Dynamical Networks
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A State-Observer-Based Approach for Synchronization in Complex Dynamical Networks

机译:复杂动态网络中基于状态观察器的同步方法

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In this paper, a new approach for synchronization of complex dynamical networks is proposed based on state observer design. Unlike the common diagonally coupling networks, where full state coupling is typically needed between two nodes, here it is suggested that only a scalar coupling signal is required to achieve network synchronization. Some conditions for synchronization, in the form of an inequality, are established based on the Lyapunov stability theory, which can be transformed to a linear matrix inequality and easily solved by a numerical toolbox. Two typical dynamical network configurations, i.e., global coupling and nearest-neighbor coupling, with each node being a modified Chua's circuit, are simulated. It is demonstrated that the proposed scheme is effective in achieving the expected chaos synchronization in the complex network
机译:本文提出了一种基于状态观测器设计的复杂动态网络同步新方法。与通常在两个节点之间通常需要全状态耦合的普通对角耦合网络不​​同,这里建议只需要一个标量耦合信号即可实现网络同步。基于李雅普诺夫稳定性理论,建立了一些不等式的同步条件,这些条件可以转化为线性矩阵不等式,并可以通过数值工具箱轻松解决。模拟了两种典型的动态网络配置,即全局耦合和最近邻居耦合,其中每个节点都是经过修改的蔡氏电路。实践证明,该方案能有效地实现复杂网络中预期的混沌同步。

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