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Globally Attracting Synchrony in a Network of Oscillators with All-to-All Inhibitory Pulse Coupling

机译:具有全部抑制脉冲耦合的振荡器网络中的全球吸引同步性

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摘要

The synchronization tendencies of networks of oscillators have been studied intensely. We assume a network of all-to-all pulse-coupled oscillators in which the effect of a pulse is independent of the number of oscillators that simultaneously emit a pulse and the normalized delay (the phase resetting) is a monotonically increasing function of oscillator phase with the slope everywhere less than one and a value greater than 2φ − 1, where φ is the normalized phase. Order switching cannot occur; the only possible solutions are globally attracting synchrony and cluster solutions with a fixed firing order. For small conduction delays, we prove the former stable and all other possible attractors nonexistent due to the destabilizing discontinuity of the phase resetting at a phase of 0.
机译:已经对振荡器网络的同步趋势进行了深入研究。我们假设一个由全部到所有脉冲耦合的振荡器组成的网络,其中脉冲的影响与同时发射一个脉冲的振荡器的数量无关,并且归一化延迟(相位重置)是振荡器相位的单调递增函数斜率到处都小于一且值大于2φ−1,其中φ是归一化相位。订单切换不会发生;唯一可能的解决方案是在全球范围内吸引具有固定触发顺序的同步和群集解决方案。对于较小的传导延迟,我们证明了前者是稳定的,而其他所有可能的吸引子都不存在,这是因为在相位为0时相位重置的不稳定不稳定。

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