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Finite-time signal lag-projective synchronous transmission between uncertain complex networks with NH3 and CO2 lasers

机译:NH3和CO2激光器在不确定的复杂网络之间的有限时间信号滞后投影同步传输

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The finite-time signal lag-projective synchronous transmission problem of two uncertain complex networks with NH and CO lasers is investigated. First, the chaotic characteristics of NH laser and CO laser are derived. Then two networks with unknown parameters and uncertain topological structure are constructed. Based on the finite-time stability theory and LaSalle's principle, the effective synchronous transmission controller and corresponding update laws are designed to guarantee lag-projective synchronization of the two uncertain complex networks in a given finite-time. Simultaneously, the unknown parameters of node dynamic are estimated successfully and the uncertain topology weights tend to the proper constants. Finally, the NH laser and CO laser are taken as node dynamics to constitute drive-response networks for simulation. The simulation results verified the effectiveness of the synchronization criteria. Moreover, the proposed approach can rapidly track the network topology changes well and the weight topology structure values are automatically adapted to the appropriate constants in the process of synchronous transmission. Furthermore, the proposed method is universal which need not assume the node dynamics satisfy the powerful and conservative Lipchitz condition.
机译:研究了带有NH和CO激光器的两个不确定复杂网络的有限时间信号滞后投影同步传输问题。首先,推导了NH激光器和CO激光器的混沌特性。然后构造了两个参数未知,拓扑结构不确定的网络。基于有限时间稳定性理论和LaSalle原理,设计了有效的同步传输控制器和相应的更新规律,以保证两个不确定的复杂网络在给定的有限时间内的滞后投影同步。同时,成功地估计了节点动态的未知参数,不确定的拓扑权重趋于适当的常数。最后,以NH激光器和CO激光器为节点动力学,组成驱动响应网络进行仿真。仿真结果验证了同步标准的有效性。而且,所提出的方法可以很好地快速跟踪网络拓扑变化,并且权重拓扑结构值在同步传输过程中自动适应适当的常数。此外,该方法具有通用性,无需假设节点动力学满足强大且保守的Lipchitz条件。

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