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Chaotic synchronization in small assemblies of driven Chua's circuits

机译:蔡氏驱动电路小组件中的混沌同步

摘要

Chaotic synchronization is studied in experiments performed on dynamic arrays of Chua's circuits that are connected by using a recently introduced driving method especially suited for the design of such arrays. Namely, the driven circuit has the same number of energy storage elements as the driving circuit. The experimental results, which are supported by theoretical analysis, are different depending on the geometric arrangement of the array. In the case of linear arrays, the first circuit always imposes its behavior to the rest of the chain at a finite velocity. Instead, in the case of ring geometries, the chaotic synchronized state is only stable up to a certain size of the ring. Beyond this critical size a desynchronizing bifurcation occurs, leading to a chaotic rotating wave that travels through the array. This instability is explained by performing an analysis in terms of modes.
机译:在对蔡氏电路动态阵列进行的实验中研究了混沌同步,该电路通过使用最近引入的特别适合于此类阵列设计的驱动方法进行连接。即,被驱动电路具有与驱动电路相同数量的能量存储元件。理论分析支持的实验结果根据阵列的几何排列而有所不同。在线性阵列的情况下,第一回路始终以有限的速度将其行为强加给链的其余部分。相反,在环的几何形状的情况下,混沌同步状态仅在环的特定大小下才稳定。超过此临界大小,将发生不同步的分叉,从而导致穿过阵列传播的混沌旋转波。通过对模式进行分析来解释这种不稳定性。

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