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Generic stabilizability for time-delayed feedback control

机译:延时反馈控制的通用稳定性

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摘要

Time-delayed feedback control is one of the most successful methods to discover dynamically unstable features of a dynamical system in an experiment. This approach feeds back only terms that depend on the difference between the current output and the output from a fixed time T ago. Thus, any periodic orbit of period T in the feedback-controlled system is also a periodic orbit of the uncontrolled system, independent of any modelling assumptions. It has been an open problem whether this approach can be successful in general, that is, under genericity conditions similar to those in linear control theory (controllability), or if there are fundamental restrictions to time-delayed feedback control. We show that, in principle, there are no restrictions. This paper proves the following: for every periodic orbit satisfying a genericity condition slightly stronger than classical linear controllability, one can find control gains that stabilize this orbit with extended time-delayed feedback control. While the paper’s techniques are based on linear stability analysis, they exploit the specific properties of linearizations near autonomous periodic orbits in nonlinear systems, and are, thus, mostly relevant for the analysis of nonlinear experiments.
机译:延时反馈控制是在实验中发现动态系统的动态不稳定特征的最成功方法之一。该方法仅反馈取决于当前输出和固定时间T ago之前的输出之间的差的项。因此,反馈控制系统中周期T的任何周期轨道也是不受控制系统的周期轨道,与任何建模假设无关。这个方法通常能否成功,即在类似于线性控制理论(可控制性)的通用条件下,还是对延时反馈控制有基本限制,一直是一个悬而未决的问题。我们证明,原则上没有限制。本文证明以下内容:对于每个满足比一般线性可控制性稍强的一般性条件的周期轨道,人们可以找到通过延长的延时反馈控制来稳定该轨道的控制增益。尽管本文的技术基于线性稳定性分析,但它们利用了非线性系统中自治周期轨道附近的线性化的特定属性,因此与非线性实验的分析最相关。

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