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Synchronization of Interconnected Systems With Applications to Biochemical Networks: An Input-Output Approach

机译:互联系统及其在生化网络中的应用同步:一种输入输出方法

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This paper provides synchronization conditions for networks of nonlinear systems. The components of the network (referred to as “compartments” in this paper) are made up of an identical interconnection of subsystems, each represented as an operator in an extended $L_{2}$ space and referred to as a “species.” The compartments are, in turn, coupled through a diffusion-like term among the respective species. The synchronization conditions are provided by combining the input-output properties of the subsystems with information about the structure of the network. The paper also explores results for state-space models, as well as biochemical applications. The work is motivated by cellular networks where signaling occurs both internally, through interactions of species, and externally, through intercellular signaling. The theory is illustrated by providing synchronization conditions for networks of Goodwin oscillators.
机译:本文提供了非线性系统网络的同步条件。网络的组成部分(在本文中称为“隔离专区”)由子系统的相同互连组成,每个子系统在扩展的$ L_ {2} $空间中表示为操作员,并称为“物种”。隔室依次通过各个种类之间的扩散类术语耦合。通过将子系统的输入-输出属性与有关网络结构的信息相结合来提供同步条件。本文还探讨了状态空间模型以及生化应用的结果。这项工作受到蜂窝网络的推动,在蜂窝网络内部,信号是通过物种之间的相互作用发生的,而外部是通过细胞间信号发生的。通过为古德温振荡器的网络提供同步条件来说明该理论。

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