具有记忆耦合的非相同 FitzHugh-Nagumo 振荡器集合的同步化

E. Navrotskaya, Aleksandr Kurbako, Vladimir Ponomarenko, Mihail Prokhorov
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摘要

本研究旨在探讨通过基于记忆晶体管的耦合相互作用的非相同神经元类 FitzHugh-Nagumo 振荡器集合的同步特征。研究方法对通过忆阻器耦合连接的 FitzHugh-Nagumo 振荡器环的集体动力学进行了数值和实验研究。振荡器的非同一性是通过对负责振荡器激励的阈值参数进行失谐或通过表征时间尺度比的参数进行失谐来实现的,时间尺度比的值决定了振荡器的固有频率。我们研究了忆阻耦合菲茨休-纳古莫振荡器的同步性,它是耦合系数大小、所有变量的初始条件和振荡器集合数量的函数。作为同步性的衡量标准,我们使用了一个表征振荡器轨迹接近程度的系数。结果结果表明,在菲茨休-纳古莫振荡器的记忆耦合中,它们的同步性不仅取决于耦合系数的大小,还取决于振荡器本身的初始状态和负责记忆耦合的变量的初始状态。我们比较了具有记忆耦合和扩散耦合的非相同菲茨休-纳古莫振荡器的同步特征。结果表明,与振荡器的扩散耦合情况相反,在忆阻耦合情况下,随着振荡器耦合强度的增加,可以观察到完全同步的同相振荡机制被破坏,取而代之的是失相振荡机制的出现。结论所获得的结果可用于解决神经元样振荡器集合的同步控制问题,特别是用于实现或破坏耦合振荡器集合的同相同步振荡机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronisation of the ensemble of nonidentical FitzHugh–Nagumo oscillators with memristive couplings
The aim of the study is to investigate the features of synchronization in ensembles of nonidentical neuron-like FitzHugh–Nagumo oscillators interacting via memristor-based coupling. Methods. The collective dynamics in a ring of FitzHugh–Nagumo oscillators connected via memristive coupling was studied numerically and experimentally. The nonidentity of oscillators was achieved by detuning them by the threshold parameter responsible for the excitation of oscillator, or by detuning them by the parameter characterizing the ratio of time scales, the value of which determines the natural frequency of oscillator. We investigated the synchronization of memristively coupled FitzHugh–Nagumo oscillators as a function of the magnitude of the coupling coefficient, the initial conditions of all variables, and the number of oscillators in the ensemble. As a measure of synchronization, we used a coefficient characterizing the closeness of oscillator trajectories. Results. It is shown that with memristive coupling of FitzHugh–Nagumo oscillators, their synchronization depends not only on the magnitude of the coupling coefficient, but also on the initial states of both the oscillators themselves and the variables responsible for the memristive coupling. We compared the synchronization features of nonidentical FitzHugh–Nagumo oscillators with memristive and diffusive couplings. It is shown that, in contrast to the case of diffusive coupling of oscillators, in the case of meristive coupling, with increasing coupling strength of the oscillators, the destruction of the regime of completely synchronous in-phase oscillations can be observed, instead of which a regime of out-of-phase oscillations appears. Conclusion. The obtained results can be used when solving the problems of synchronization control in ensembles of neuronlike oscillators, in particular, for achieving or destroying the regime of in-phase synchronization of oscillations in an ensemble of coupled oscillators.
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