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Restoration of rhythmicity in diffusively coupled dynamical networks

机译:扩散耦合动力网络中的节奏恢复

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摘要

Oscillatory behaviour is essential for proper functioning of various physical and biological processes. However, diffusive coupling is capable of suppressing intrinsic oscillations due to the manifestation of the phenomena of amplitude and oscillation deaths. Here we present a scheme to revoke these quenching states in diffusively coupled dynamical networks, and demonstrate the approach in experiments with an oscillatory chemical reaction. By introducing a simple feedback factor in the diffusive coupling, we show that the stable (in) homogeneous steady states can be effectively destabilized to restore dynamic behaviours of coupled systems. Even a feeble deviation from the normal diffusive coupling drastically shrinks the death regions in the parameter space. The generality of our method is corroborated in diverse non-linear systems of diffusively coupled paradigmatic models with various death scenarios. Our study provides a general framework to strengthen the robustness of dynamic activity in diffusively coupled dynamical networks.
机译:振荡行为对于各种物理和生物过程的正常运行至关重要。然而,由于振幅和振荡死亡现象的表现,扩散耦合能够抑制固有振荡。在这里,我们提出了一种在扩散耦合动力学网络中撤销这些猝灭态的方案,并在振荡化学反应的实验中演示了该方法。通过在扩散耦合中引入一个简单的反馈因子,我们表明,稳定(均质)稳态可以有效地不稳定化,以恢复耦合系统的动态行为。即使是与正常扩散耦合的微小偏离,也会极大地缩小参数空间中的死亡区域。我们的方法的普遍性在具有各种死亡场景的扩散耦合范式模型的各种非线性系统中得到了证实。我们的研究提供了一个通用框架,以增强扩散耦合动力学网络中动态活动的鲁棒性。

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