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Controllability of networked higher-dimensional systems with one-dimensional communication

机译:一维通信的网络高维系统的可控性

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摘要

In this paper, the state controllability of networked higher-dimensional linear time-invariant dynamical systems is considered, where communications are performed through one-dimensional connections. The influences on the controllability of such a networked system are investigated, which come from a combination of network topology, node-system dynamics, external control inputs and inner interactions. Particularly, necessary and sufficient conditions are presented for the controllability of the network with a general topology, as well as for some special settings such as cycles and chains, which show that the observability of the node system is necessary in general and the controllability of the node system is necessary for chains but not necessary for cycles. Moreover, two examples are constructed to illustrate that uncontrollable node systems can be assembled to a controllable networked system, while controllable node systems may lead to uncontrollable systems even for the cycle topology.This article is part of the themed issue ‘Horizons of cybernetical physics’.
机译:本文考虑了通过一维连接进行通信的网络化高维线性时不变动力学系统的状态可控性。研究了这种网络系统的可控制性的影响,这些影响来自网络拓扑,节点系统动力学,外部控制输入和内部交互的组合。特别是,提出了具有通用拓扑的网络的可控制性以及某些特殊设置(例如周期和链)的必要条件和充分条件,这些条件表明节点系统的可观察性通常是必需的,并且节点系统的可控制性节点系统对于链是必需的,但对于循环则不是必需的。此外,构建了两个示例来说明不可控节点系统可以组装为可控网络系统,而即使对于循环拓扑结构,可控节点系统也可能导致不可控系统。本文是主题“控制论物理学的视野”的一部分。

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