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Controllability of Weighted and Directed Networks with Nonidentical Node Dynamics

机译:具有不相同节点动力学的加权和定向网络的可控性

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摘要

The concept of controllability from control theory is applied to weighted and directed networks with heterogenous linear or linearized node dynamics subject to exogenous inputs, where the nodes are grouped into leaders and followers. Under this framework, the controllability of the controlled network can be decomposed into two independent problems: the controllability of the isolated leader subsystem and the controllability of the extended follower subsystem. Some necessary and/or sufficient conditions for the controllability of the leader-follower network are derived based on matrix theory and graph theory. In particular, it is shown that a single-leader network is controllable if it is a directed path or cycle, but it is uncontrollable for a complete digraph or a star digraph in general. Furthermore, some approaches to improving the controllability of a heterogenous network are presented. Some simulation examples are given for illustration and verification.
机译:来自控制理论的可控性概念被应用于具有异质线性或线性化节点动力学且受外部输入约束的加权和定向网络,其中节点被分为领导者和跟随者。在这种框架下,受控网络的可控制性可以分解为两个独立的问题:隔离的领导者子系统的可控制性和扩展的跟随者子系统的可控制性。基于矩阵理论和图论导出了领导者跟随者网络可控性的一些必要和/或充分条件。特别地,示出了单引导者网络如果是有向路径或循环则是可控制的,但是对于完整的有向图或星形有向图通常是不可控的。此外,提出了一些改善异构网络可控性的方法。给出了一些仿真示例,以进行说明和验证。

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  • 来源
    《Mathematical Problems in Engineering》 |2013年第6期|405034.1-405034.10|共10页
  • 作者单位

    Department of Automation, Xiamen University, Xiamen 361005, China;

    Department of Media and Communication, City University of Hong Kong, Hong Kong;

    Department of Automation, Xiamen University, Xiamen 361005, China;

    Department of Electronic Engineering, City University of Hong Kong, Hong Kong;

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