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首页> 外文期刊>Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences >Interplay of time-delayed feedback control and temporally correlated noise in excitable systems
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Interplay of time-delayed feedback control and temporally correlated noise in excitable systems

机译:激励系统中时滞反馈控制与时间相关噪声的相互作用

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摘要

The interplay of time-delayed feedback and temporally correlated coloured noise in a single and two coupled excitable systems is studied in the framework of the FitzHugh–Nagumo (FHN) model. By using coloured noise instead of white noise, the noise correlation time is introduced as an additional time scale. We show that in a single FHN system the major time scale of oscillations is strongly influenced by the noise correlation time, which in turn affects the maxima of coherence with respect to the delay time. In two coupled FHN systems, coloured noise input to one subsystem influences coherence resonance and stochastic synchronization of both subsystems. Application of delayed feedback control to the coloured noise-driven subsystem is shown to change coherence and time scales of noise-induced oscillations in both systems, and to enhance or suppress stochastic synchronization under certain conditions.
机译:在FitzHugh-Nagumo(FHN)模型的框架内,研究了单个和两个耦合的可激励系统中时滞反馈和时间相关色噪声之间的相互作用。通过使用彩色噪声代替白噪声,将噪声相关时间作为附加的时间标度。我们表明,在单个FHN系统中,主要的振荡时间尺度受噪声相关时间的强烈影响,而噪声相关时间反过来又影响了相对于延迟时间的相干性最大值。在两个耦合的FHN系统中,输入到一个子系统的有色噪声会影响两个子系统的相干共振和随机同步。结果表明,将延迟反馈控制应用于有色噪声驱动的子系统可以改变两个系统中噪声引起的振荡的相干性和时标,并在某些条件下增强或抑制随机同步。

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