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Dynamic Environment Coupling Induced Synchronized States in Coupled Time-Delayed Electronic Circuits

机译:耦合时延电子电路中的动态环境耦合感应同步状态

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摘要

We experimentally demonstrate the effect of dynamic environment coupling in a system of coupled piecewise linear time-delay electronic circuits with mutual and subsystem coupling configurations. Time-delay systems are essentially infinite-dimensional systems with complex phase- space properties. Dynamic environmental coupling with mutual coupling configuration has been recently theoretically shown to induce complete (CS) and inverse synchronizations (IS) [Resmi et al., 2010] in low-dimensional dynamical systems described by ordinary differential equations (ODEs), for which no experimental confirmation exists. In this paper, we investigate the effect of dynamic environment for the first time in mutual as well as subsystem coupling configurations in coupled time-delay differential equations theoretically and experimentally. Depending upon the coupling strength and the nature of feedback, we observe a transition from asynchronization to CS via phase synchronization and from asynchronization to IS via inverse-phase synchronization in both coupling configurations. The results are corroborated by snapshots of the time evolution, phase projection plots and localized sets as observed from the oscilloscope. Further, the synchronization is also confirmed numerically from the largest Lyapunov exponents, correlation of probability of recurrence and correlation coefficient of the coupled time-delay system. We also present a linear stability analysis and obtain conditions for different synchronized states.
机译:我们通过实验证明了动态环境耦合在具有相互和子系统耦合配置的分段分段线性时延电子电路系统中的影响。延时系统本质上是具有复杂相空间特性的无限维系统。从理论上讲,具有相互耦合配置的动态环境耦合在由常微分方程(ODE)描述的低维动力系统中可诱导完全(CS)和逆同步(IS)[Resmi et al。,2010]。实验证实。在本文中,我们在理论上和实验上首次研究了动态环境在相互以及子系统耦合配置中耦合时滞微分方程中的影响。根据耦合强度和反馈的性质,在两种耦合配置中,我们都通过相位同步观察到从异步到CS的过渡,以及通过反相同步从异步到IS的过渡。从示波器观察到的时间演化快照,相位投影图和局部集证实了结果。此外,还从最大的Lyapunov指数,递归概率的相关性和耦合时滞系统的相关系数中数字地确认了同步。我们还提出了线性稳定性分析,并获得了不同同步状态的条件。

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