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Dynamics in hybrid complex systems of switches and oscillators

机译:开关和振荡器的混合复杂系统中的动力学

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摘要

While considerable progress has been made in the analysis of large systems containing a single type of coupled dynamical component (e.g., coupled oscillators or coupled switches), systems containing diverse components (e.g., both oscillators and switches) have received much less attention. We analyze large, hybrid systems of interconnected Kuramoto oscillators and Hopfield switches with positive feedback. In this system, oscillator synchronization promotes switches to turn on. In turn, when switches turn on, they enhance the synchrony of the oscillators to which they are coupled. Depending on the choice of parameters, we find theoretically coexisting stable solutions with either (i) incoherent oscillators and all switches permanently off, (ii) synchronized oscillators and all switches permanently on, or (iii) synchronized oscillators and switches that periodically alternate between the on and off states. Numerical experiments confirm these predictions. We discuss how transitions between these steady state solutions can be onset deterministically through dynamic bifurcations or spontaneously due to finite-size fluctuations.
机译:尽管在分析包含单一类型的耦合动态分量的大型系统(例如,耦合的振荡器或耦合的开关)方面已经取得了很大的进步,但是包含多种分量的系统(例如,振荡器和开关两者)的系统受到的关注却很少。我们分析了具有正反馈的相互连接的仓本振荡器和Hopfield开关的大型混合系统。在该系统中,振荡器同步促进开关导通。继而,当开关接通时,它们增强了与其耦合的振荡器的同步性。根据参数的选择,我们找到了以下理论上并存的稳定解决方案:(i)非相干振荡器和所有开关永久断开,(ii)同步振荡器和所有开关永久导通,或者(iii)同步振荡器和在两个振荡器之间周期性交替的开关开启和关闭状态。数值实验证实了这些预测。我们讨论了如何通过动态分叉确定性地或由于有限大小的波动而自发地开始这些稳态解之间的过渡。

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