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STABILIZING THE UNSTABLE PERIODIC ORBITS OF A CHAOTIC SYSTEM USING ADAPTIVE TIME-DELAYED STATE FEEDBACK

机译:使用自适应时间延迟状态反馈稳定混沌系统的不稳定周期轨道

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In this paper we deal with the control of chaotic systems. Knowing that a chaotic attractor contains a myriad of unstable periodic orbits (UPO's), the aim of our work is to stabilize some of the UPO's buried in the chaotic attractor and which have interesting characteristics. First, using the input-to-state linearization method in conjunction with a time-delayed state feedback, we design a control signal that can achieve stabilization. Next, an adaptive time-delayed state feedback is proposed which shows at once efficiency and simplicity. The efficacy of the proposed methods is illustrated by numerical simulations onto Chua's system.
机译:在本文中,我们处理混沌系统的控制。知道混乱的吸引子包含一个无数的不稳定周期轨道(UPO的),我们的作品的目的是稳定一些埋葬在混乱吸引子的UPO并且具有有趣的特征。首先,使用输入到状态线性化方法与延时状态反馈结合,我们设计了可以实现稳定的控制信号。接下来,提出了一种以效率和简单地示出的自适应时间延迟状态反馈。所提出的方法的功效通过数值模拟来说明CHUA系统。

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