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PulseSync: An Efficient and Scalable Clock Synchronization Protocol

机译:PulseSync:高效且可扩展的时钟同步协议

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Clock synchronization is an enabling service for a wide range of applications and protocols in both wired and wireless networks. We study the implications of clock drift and communication latency on the accuracy of clock synchronization when scaling the network diameter. Starting with a theoretical analysis of synchronization protocols, we prove tight bounds on the synchronization error in a model that assumes independently and randomly distributed communication delays and slowly changing drifts. While this model is more optimistic than traditional worst-case analysis, it much better captures the nature of real-world systems such as wireless networks. The bound on the synchronization accuracy, which is roughly the square root of the network diameter, is achieved by the novel PulseSync protocol. Extensive experiments demonstrate that PulseSync is able to meet the predictions from theory and tightly synchronizes large networks. This contrasts against an exponential growth of the skew incurred by the state-of-the-art protocol for wireless sensor networks. Moreover, PulseSync adapts much faster to network dynamics and changing clock drifts than this protocol.
机译:时钟同步是一项针对有线和无线网络中广泛应用和协议的启用服务。我们在缩放网络直径时研究了时钟漂移和通信等待时间对时钟同步精度的影响。从对同步协议的理论分析开始,我们在一个模型中证明了同步错误的严格界限,该模型假设独立且随机分布的通信延迟和缓慢变化的漂移。尽管此模型比传统的最坏情况分析更为乐观,但它可以更好地捕捉无线网络等现实世界系统的本质。通过新颖的PulseSync协议,可以达到同步精度的界线,大约是网络直径的平方根。大量实验表明,PulseSync能够满足理论上的预测,并且可以紧密同步大型网络。这与无线传感器网络的最新协议引起的偏斜的指数增长形成对比。此外,与该协议相比,PulseSync能够更快地适应网络动态变化和时钟漂移。

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