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Tracking controlled chaos: Theoretical foundations and applications

机译:跟踪受控混乱:理论基础和应用

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Tracking controlled states over a large range of accessible parameters is a process which allows for the experimental continuation of unstable states in both chaotic and non-chaotic parameter regions of interest. In algorithmic form, tracking allows experimentalists to examine many of the unstable states responsible for much of the observed nonlinear dynamic phenomena. Here we present a theoretical foundation for tracking controlled states from both dynamical systems as well as control theoretic viewpoints. The theory is constructive and shows explicitly how to track a curve of unstable states as a parameter is changed. Applications of the theory to various forms of control currently used in dynamical system experiments are discussed. Examples from both numerical and physical experiments are given to illustrate the wide range of tracking applications.
机译:在大范围的可访问参数上跟踪受控状态是一个过程,它允许在感兴趣的混沌和非混沌参数区域中实验性地继续不稳定状态。以算法的形式,跟踪使实验者可以检查许多引起许多观察到的非线性动力学现象的不稳定状态。在这里,我们为从动力学系统以及控制理论观点跟踪受控状态提供了理论基础。该理论具有建设性,并明确显示了如何在参数更改时跟踪不稳定状态的曲线。讨论了该理论在动力学系统实验中当前使用的各种形式的控制中的应用。数值和物理实验都给出了示例,以说明跟踪应用的广泛范围。

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