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Pulse-Coupled Synchronization With Guaranteed Clock Continuity

机译:具有时钟连续性的脉冲耦合同步

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Clock synchronization is a widely discussed topic in the engineering literature. Ensuring that individual clocks are closely aligned is important in network systems, since the correct timing of various events in a network is usually necessary for proper system implementation. However, many existing clock synchronization algorithms update clock values abruptly and instantaneously, resulting in discontinuous clocks, which have been shown to lead to undesirable behavior. In this paper, we explore the generalization of the pulse-coupled oscillator model to guarantee clock continuity, achieving continuous phase evolution in any pulse-coupled oscillator network. We provide rigorous mathematical proof for pulse-coupled synchronization under the proposed phase continuity methods, along with analysis of the time to synchronization under phase continuity. Two simple methods to achieve the desired continuity are presented. We further provide simulation and experimental results supporting these proofs, analyzing the effects of the phase continuity methods to convergence. We also investigate the convergence behavior of other pulse-coupled oscillator synchronization algorithms using the proposed methods.
机译:时钟同步是工程文献中广泛讨论的主题。在网络系统中,确保各个时钟紧密对齐非常重要,因为对于正确的系统实施,通常需要对网络中各种事件进行正确的计时。但是,许多现有的时钟同步算法会突然且瞬时地更新时钟值,从而导致时钟不连续,这已被证明会导致不良行为。在本文中,我们探索了脉冲耦合振荡器模型的推广,以确保时钟连续性,从而在任何脉冲耦合振荡器网络中实现连续的相位演化。我们在提出的相位连续性方法下为脉冲耦合同步提供了严格的数学证明,并分析了在相位连续性下达到同步的时间。介绍了两种实现所需连续性的简单方法。我们进一步提供支持这些证明的仿真和实验结果,分析了相连续性方法收敛的效果。我们还使用提出的方法研究其他脉冲耦合振荡器同步算法的收敛行为。

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