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Chaotic waves and spatio-temporal patterns in large arrays of doubly-coupled Chua's circuits

机译:大型双耦合蔡氏电路中的混沌波和时空模式

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摘要

We investigate complex dynamic phenomena in arrays composed of interacting chaotic circuits. Such arrays can be thought of as a model of nonlinear phenomena in spatially extended (high-dimensional or infinite-dimensional) systems and active media with potential applications in signal processing. In this paper, we consider a particular structure of the network in which there exists double diffusive interactions between the cells. Such a double interaction can be considered as a paradigm and means for understanding very complex interactions existing in real systems where separate cells can communicate in various ways. We consider two basic cases where separate cells without coupling exhibit two different types of chaotic behavior. Depending on the connection structure, initial conditions imposed in the cells, the array exhibits various kinds of spatially ordered chaotic waves. Patterns of behavior depending on the excitation of the array and the connection structure are studied in this paper. Chua's circuits are taken as standard chaotic cells.
机译:我们研究了由相互作用的混沌电路组成的阵列中的复杂动力学现象。可以将此类阵列视为空间扩展(高维或无限维)系统和有源介质中非线性现象的模型,并在信号处理中有潜在的应用。在本文中,我们考虑了一个特殊的网络结构,其中的单元之间存在双重扩散相互作用。可以将这种双重交互视为理解实际系统中存在的非常复杂的交互的范例和手段,在实际系统中,单独的单元可以以各种方式进行通信。我们考虑两种基本情况,其中没有耦合的独立细胞表现出两种不同类型的混沌行为。根据连接结构,施加在单元中的初始条件,阵列会显示各种空间有序的混沌波。本文研究了取决于阵列激励和连接结构的行为模式。蔡氏电路被视为标准混沌细胞。

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