Model-free chaos control in a chaotic Henon-like system using Takens embedding theory

R. Hajiloo, H. Salarieh, A. Alasty
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Abstract

In this paper, the problem of chaos control in a chaotic Henon-like system without using the governing equations of the system is investigated. It is also assumed that the system has only one measurable state. The time-series of the measurable state is used to stabilize chaos by a three-step method. First, using Takens embedding theory, a delayed phase space is reconstructed preserving the topological characteristics of the system. Then, an appropriate dynamic model is identified to estimate the time-series data in the reconstructed phase space. Finally, the unstable fixed point of the system is stabilized using an appropriate linear delayed feedback controller with controller gains systematically computed.
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基于Takens嵌入理论的混沌类henon系统的无模型混沌控制
研究了一类混沌类henon系统在不使用控制方程的情况下的混沌控制问题。还假设系统只有一个可测量的状态。利用可测状态的时间序列,采用三步法稳定混沌。首先,利用Takens嵌入理论重构延迟相空间,保持系统的拓扑特征;然后,确定合适的动态模型来估计重构相空间中的时间序列数据。最后,利用适当的线性延迟反馈控制器对系统的不稳定不动点进行了稳定,并系统地计算了控制器增益。
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