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通过调整拓扑结构来控制集群同步。

Controlling cluster synchronization by adapting the topology.

作者信息

Lehnert Judith, Hövel Philipp, Selivanov Anton, Fradkov Alexander, Schöll Eckehard

机构信息

Institut für Theoretische Physik, Technische Universität Berlin, Hardenbergstraße 36, 10623 Berlin, Germany.

Institut für Theoretische Physik, Technische Universität Berlin, Hardenbergstraße 36, 10623 Berlin, Germany and Bernstein Center for Computational Neuroscience, Humboldt-Universität zu Berlin, Philippstraße 13, 10115 Berlin, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Oct;90(4):042914. doi: 10.1103/PhysRevE.90.042914. Epub 2014 Oct 17.

Abstract

We suggest an adaptive control scheme for the control of in-phase and cluster synchronization in delay-coupled networks. Based on the speed-gradient method, our scheme adapts the topology of a network such that the target state is realized. It is robust towards different initial conditions as well as changes in the coupling parameters. The emerging topology is characterized by a delicate interplay of excitatory and inhibitory links leading to the stabilization of the desired cluster state. As a crucial parameter determining this interplay we identify the delay time. Furthermore, we show how to construct networks such that they exhibit not only a given cluster state but also with a given oscillation frequency. We apply our method to coupled Stuart-Landau oscillators, a paradigmatic normal form that naturally arises in an expansion of systems close to a Hopf bifurcation. The successful and robust control of this generic model opens up possible applications in a wide range of systems in physics, chemistry, technology, and life science.

摘要

我们提出了一种自适应控制方案,用于控制延迟耦合网络中的同相同步和簇同步。基于速度梯度方法,我们的方案调整网络拓扑以实现目标状态。它对不同的初始条件以及耦合参数的变化具有鲁棒性。出现的拓扑结构的特征是兴奋性和抑制性连接之间的微妙相互作用,从而导致所需簇状态的稳定。作为决定这种相互作用的关键参数,我们确定了延迟时间。此外,我们展示了如何构建网络,使其不仅呈现给定的簇状态,还具有给定的振荡频率。我们将我们的方法应用于耦合的斯图尔特 - 兰道振子,这是一种典型的范式,自然地出现在接近霍普夫分岔的系统展开中。对这个通用模型的成功且鲁棒的控制为物理、化学、技术和生命科学等广泛系统中的可能应用开辟了道路。

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