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Finite-time increased order chaotic synchronization using an adaptive terminal sliding mode control

机译:使用自适应终端滑动模式控制有限时间增加顺序混沌同步

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This study designs an adaptive terminal sliding mode controller to synchronize two different order chaotic systems with system model uncertainties, external nonlinear disturbances and input nonlinearities. Firstly, the concept of the increased-order chaotic synchronization is described. Then a terminal sliding mode surface is designed, which causes the sliding mode motion of error system to reach the origin along the mode surface in finite time. Furthermore, a controller is constructed to ensure that synchronization error system converge and maintain the proposed surface. Finally, the synchronization simulation example between uncertain Lorenz system and uncertain hyperchaotic R?ssler system is given.
机译:本研究设计了一种自适应终端滑动模式控制器,可以使两个不同的顺序混沌系统与系统模型不确定性,外部非线性干扰和输入非线性同步。首先,描述了增加秩序混沌同步的概念。然后设计了终端滑动模式表面,这使得误差系统的滑动模式运动沿着模式表面在有限时间内到达原点。此外,构造控制器以确保同步误差系统会聚并维持所提出的表面。最后,给出了不确定的Lorenz系统与不确定超声R的同步仿真示例。

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