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On the relationship between pinning control effectiveness and graph topology in complex networks of dynamical systems

机译:复杂动力系统中钉扎控制有效性与图拓扑的关系

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摘要

This paper concerns pinning control in complex networks of dynamical systems, where an external forcing signal is applied to the network in order to align the state of all the systems to the forcing signal. By considering the control signal as the state of a virtual dynamical system, this problem can be studied as a synchronization problem. The main focus of this paper is to study how the effectiveness of pinning control depends on the underlying graph. In particular, we look at the relationship between pinning control effectiveness and the complex network asymptotically as the number of vertices in the network increases. We show that for vertex balanced graphs, if the number of systems receiving pinning control does not grow as fast as the total number of systems, then the strength of the control needed to effect pinning control will be unbounded as the number of vertices grows. Furthermore, in order to achieve pinning control in systems coupled via locally connected graphs, as the number of systems grows, both the pinning control and the coupling among all systems need to increase. Finally, we give evidence to show that applying pinning control to minimize the distances between all systems to the pinned systems can lead to a more effective pinning control. (C) 2008 American Institute of Physics.
机译:本文涉及动态系统的复杂网络中的钉扎控制,其中将外部强制信号应用于网络,以使所有系统的状态与强制信号对齐。通过将控制信号视为虚拟动力系统的状态,可以将此问题视为同步问题。本文的主要重点是研究固定控制的有效性如何取决于基础图形。特别是,随着网络中顶点数量的增加,渐近地观察固定控制有效性和复杂网络之间的关系。我们表明,对于顶点平衡图,如果接受钉扎控制的系统数量增长的速度不如系统总数的增长快,那么实现销钉控制所需的控制强度将随着顶点数量的增长而不受限制。此外,为了在经由本地连接的图耦合的系统中实现钉扎控制,随着系统数量的增加,钉扎控制和所有系统之间的耦合都需要增加。最后,我们提供证据表明应用钉扎控制来最小化所有系统到钉扎系统之间的距离可以导致更有效的钉扎控制。 (C)2008美国物理研究所。

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