Feedback control of collective dynamics in an oscillator population with time-dependent connectivity

Michael Rosenblum
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Abstract

We present a numerical study of pulsatile feedback-based control of synchrony level in a highly-interconnected oscillatory network. We focus on a nontrivial case when the system is close to the synchronization transition point and exhibits collective rhythm with strong amplitude modulation. We pay special attention to technical but essential steps like causal real-time extraction of the signal of interest from a noisy measurement and estimation of instantaneous phase and amplitude. The feedback loop’s parameters are tuned automatically to suppress synchrony. Though the study is motivated by neuroscience, the results are relevant to controlling oscillatory activity in ensembles of various natures and, thus, to the rapidly developing field of network physiology.
具有时间相关性的振荡器群体集体动力学的反馈控制
我们对高度互联振荡网络中基于脉冲反馈的同步水平控制进行了数值研究。我们将重点放在系统接近同步转换点并表现出具有强振幅调制的集体节奏的非难情况上。我们特别关注一些技术性但必不可少的步骤,如从噪声测量中实时提取相关信号的因果关系,以及估计瞬时相位和振幅。反馈回路的参数会自动调整,以抑制同步性。虽然这项研究的动机来自神经科学,但其结果与控制各种性质的集合体中的振荡活动相关,因此也与快速发展的网络生理学领域相关。
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