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A Systematic Approach to Bi-Directionally Nonlinearly Coupled Systems Design for the Generation of Complex Dynamical Behaviours

机译:复杂动力行为产生的双向非线性耦合系统设计的系统方法

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摘要

In this paper, a procedure to design a class of coupled systems that exhibit complex behaviours is presented. The proposed method is rigorously and systematically applicable to any dynamic system with nonlinear polynomial elements. Starting from two identical nonlinear algebraic systems, the proposed approach determines a proper bidirectional coupling that is able to force the coupled systems to exhibit complex behaviours. The coupling strength permits to control bifurcations of the system, i.e., to move through different regions of the parameter space, characterized by different complex behaviours of the system. Among the analyzed complex phenomena (generalized synchronization, blowout bifurcation, on–off intermittency and hyperchaos) a particular relevance is given to hyperchaotic behaviour. Moreover the basic design principle is demonstrated by means of proper examples.
机译:在本文中,提出了一种设计一类显示复杂行为的耦合系统的过程。所提出的方法可以严格,系统地应用于具有非线性多项式元素的任何动态系统。从两个相同的非线性代数系统开始,所提出的方法确定了适当的双向耦合,该双向耦合能够迫使耦合的系统表现出复杂的行为。耦合强度允许控制系统的分叉,即,移动通过参数空间的不同区域,以系统的不同复杂行为为特征。在分析的复杂现象(广义同步,井喷分叉,开-关间歇性和超混沌)中,与超混沌行为具有特殊的相关性。此外,通过适当的示例说明了基本设计原理。

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