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在耦合混沌振子的复杂网络中诱导孤立失步状态。

Inducing isolated-desynchronization states in complex network of coupled chaotic oscillators.

作者信息

Lin Weijie, Li Huiyan, Ying Heping, Wang Xingang

机构信息

School of Physics and Information Technology, Shaanxi Normal University, Xi'an 710062, China.

Department of Physics, Zhejiang University, Hangzhou 310027, China.

出版信息

Phys Rev E. 2016 Dec;94(6-1):062303. doi: 10.1103/PhysRevE.94.062303. Epub 2016 Dec 8.

Abstract

In a recent study about chaos synchronization in complex networks [Nat. Commun. 5, 4079 (2014)NCAOBW2041-172310.1038/ncomms5079], it is shown that a stable synchronous cluster may coexist with vast asynchronous nodes, resembling the phenomenon of a chimera state observed in a regular network of coupled periodic oscillators. Although of practical significance, this new type of state, namely, the isolated-desynchronization state, is hardly observed in practice due to its strict requirements on the network topology. Here, by the strategy of pinning coupling, we propose an effective method for inducing isolated-desynchronization states in symmetric networks of coupled chaotic oscillators. Theoretical analysis based on eigenvalue analysis shows that, by pinning a group of symmetric nodes in the network, there exists a critical pinning strength beyond which the group of pinned nodes can completely be synchronized while the unpinned nodes remain asynchronous. The feasibility and efficiency of the control method are verified by numerical simulations of both artificial and real-world complex networks with the numerical results in good agreement with the theoretical predictions.

摘要

在最近一项关于复杂网络中混沌同步的研究[《自然·通讯》5, 4079 (2014)NCAOBW2041 - 172310.1038/ncomms5079]中,研究表明稳定的同步簇可能与大量异步节点共存,这类似于在耦合周期振荡器的规则网络中观察到的嵌合体状态现象。尽管具有实际意义,但这种新型状态,即孤立去同步状态,由于其对网络拓扑结构有严格要求,在实践中很难被观察到。在此,通过钉扎耦合策略,我们提出了一种在耦合混沌振荡器对称网络中诱导孤立去同步状态的有效方法。基于特征值分析的理论分析表明,通过在网络中钉扎一组对称节点,存在一个临界钉扎强度,超过该强度,被钉扎节点组可以完全同步,而未被钉扎节点保持异步。通过对人工和真实世界复杂网络的数值模拟验证了该控制方法的可行性和有效性,数值结果与理论预测吻合良好。

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