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首页> 外文期刊>SIAM Journal on Control and Optimization >SYNCHRONIZATION IN PULSE-COUPLED OSCILLATORS WITH DELAYED EXCITATORY/INHIBITORY COUPLING
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SYNCHRONIZATION IN PULSE-COUPLED OSCILLATORS WITH DELAYED EXCITATORY/INHIBITORY COUPLING

机译:激励/抑制耦合延迟的脉冲耦合振荡器的同步

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摘要

Due to their rich behaviors, pulse-coupled oscillator (PCO) networks have been widely studied. Prior research has focused on systems with excitatory, inhibitory, and mixed excitatory/inhibitory coupling, as well as on systems with and without delays in pulse transmission. This article focuses on PCO networks with delayed excitatory/inhibitory coupling. We consider a simple phase update rule and show that the resulting PCO network is a linear time-varying control system with the delays as input disturbances. We define the synchronization error as the length of the arc containing the oscillators' phases. We show that the synchronization error converges exponentially fast to a final value proportional to the maximum transmission delay, under the following sufficient conditions: (i) the coupling strength is sufficiently small, (ii) the network has a globally reachable node, and (iii) the delays are sufficiently small. A corollary to this result is that, when all the delays are zero, the network synchronizes exactly and exponentially fast. We also estimate the rate of convergence, final synchronization error, and basin of attraction of the final state, and analyze special cases where synchronization occurs even in the presence of delays. We then extend the analysis to PCO networks with delayed inhibitory coupling, and identify sufficient conditions for synchronization that are less conservative than those in existing literature.
机译:由于其丰富的行为,脉冲耦合振荡器(PCO)网络已得到广泛研究。先前的研究集中于具有兴奋性,抑制性和混合性的兴奋性/抑制性耦合的系统,以及具有或不具有脉冲传输延迟的系统。本文重点介绍具有延迟的兴奋性/抑制性耦合的PCO网络。我们考虑了一个简单的相位更新规则,并证明了所得的PCO网络是线性时变控制系统,其时延为输入干扰。我们将同步误差定义为包含振荡器相位的弧长。我们表明,在以下足够的条件下,同步误差以指数方式快速收敛到与最大传输延迟成比例的最终值:(i)耦合强度足够小,(ii)网络具有全局可到达的节点,并且(iii )延迟足够小。此结果的推论是,当所有延迟均为零时,网络将精确且指数级地同步。我们还估计了收敛速度,最终同步误差和最终状态的吸引盆,并分析了即使在存在延迟的情况下也会发生同步的特殊情况。然后,我们将分析扩展到具有延迟抑制耦合的PCO网络,并确定同步的条件,这些条件比现有文献中的保守性要低。

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