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How to minimize the control frequency to sustain transient chaos using partial control

机译:如何使用部分控制最小化控制频率以维持瞬态混沌

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摘要

In any control problem it is desirable to apply the control as infrequently as possible. In this paper we address the problem of how to minimize the frequency of control in presence of external perturbations, that we call disturbances, when the goal is to sustain transient chaos. We show here that the partial control method, that allows to find the minimum control required to sustain transient chaos in presence of disturbances, is the key to find such minimum control frequency. We prove first for the paradigmatic tent map of slope greater than 2 that for a constant value of the disturbances, the control required to sustain transient chaos decreases when the control is applied every k iterates of the map. We show that the combination of this property with the fact that the disturbances grow with k implies that there is a minimum control frequency and we provide a procedure to compute it. Finally we give evidence of the generality of this result showing that the same features are reproduced when considering the Henon map.
机译:在任何控制问题中,都希望尽可能少地应用控制。在本文中,当目标是维持瞬态混沌时,我们解决了在存在外部扰动的情况下如何最小化控制频率的问题,我们将其称为干扰。我们在这里表明,局部控制方法可以找到在存在干扰的情况下维持瞬态混沌所需的最小控制,这是找到这种最小控制频率的关键。我们首先证明,对于坡度大于2的范式帐篷图,对于恒定的扰动值,当在地图的每k个迭代中应用控件时,维持瞬态混沌所需的控件会减少。我们证明了该特性与扰动随k增大的事实的组合意味着存在最小控制频率,并提供了计算它的过程。最后,我们给出了该结果的一般性的证据,表明考虑到Henon映射时可以重现相同的特征。

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