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Chaos Synchronization of Hyperchaotic Zhou System by Adaptive Integral Sliding Mode Control

机译:基于自适应集成滑模控制的超混沌Zhou系统的混沌同步。

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In this paper, an adaptive integral sliding mode control scheme is developed to study the control and synchronization of the hyper chaotic Zhou system with unknown parameters. First, an integral sliding mode control is designed which can stabilize the hyper chaotic Zhou system with known parameters to its unstable equilibrium at the origin. In the next step, the aim is synchronization of two identical hyper chaotic master and slave Zhou systems with unknown parameters. The master and slave system can be considered as a simple dynamical network with two nodes and one link. We propose an adaptive scheme which is led to a new type adaptive controller for this dynamical network with hyper chaotic Zhou system as oscillators which can identify unknown parameters of the master system and synchronize master and slave systems. Simulation results have shown that the proposed method has an excellent convergence from both speed and accuracy points of view and it outperforms Sundarapandian Vaidyanathan's scheme, a well-recognized scheme in the area.
机译:本文研究了一种自适应积分滑模控制方案,研究了参数未知的超混沌Zhou系统的控制与同步问题。首先,设计了一种整体滑模控制,该控制可以使具有已知参数的超混沌Zhou系统稳定到原点的不稳定平衡。下一步,目标是同步两个未知参数的相同超混沌主从系统。主从系统可以被认为是具有两个节点和一个链接的简单动态网络。我们提出了一种自适应方案,该方案导致了一种针对该动态网络的新型自适应控制器,该系统以超混沌Zhou系统作为振荡器,可以识别主系统的未知参数并同步主系统和从系统。仿真结果表明,该方法从速度和精度两方面都具有很好的收敛性,并且优于该地区公认的方案Sundarapandian Vaidyanathan方案。

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