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An approach for precise, scalable, and platform independent clock synchronization

机译:精确,可扩展且与平台无关的时钟同步的方法

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Clock synchronization is an important issue in wired and wireless networks as a common time basis is essential for coordinated activities of nodes in distributed systems. Typical applications demanding precise synchronization are Industrial Internet scenarios having real-time constraints, Wireless Sensor Networks (WSNs) where the nodes communicate only for a short period and can sleep the remaining time to save energy, approaches based on Time Division Multiple Access (TDMA), and distributed measurements. The basic idea of our approach is to estimate all delays in a network. As a result, we can estimate the one-way delay between a reference node and all other nodes in the network. Consequently, we can use broadcast messages to synchronize the entire network. Utilizing a novel measurement method and a Java prototype implementation, we show that our approach achieves a high precision (≈ 123 μβ). Furthermore, it is highly scalable and platform independent. As our synchronization approach operates at the application layer, it is suitable for both wired and wireless networks.
机译:时钟同步是有线和无线网络中的一个重要问题,因为公共时间基础对于分布式系统中节点的协调活动至关重要。要求精确同步的典型应用是具有实时限制的工业Internet场景,无线传感器网络(WSN)(其中节点仅短时间通信并且可以休眠其余时间以节省能源),基于时分多址(TDMA)的方法,以及分布式测量。我们方法的基本思想是估计网络中的所有延迟。结果,我们可以估计参考节点与网络中所有其他节点之间的单向延迟。因此,我们可以使用广播消息来同步整个网络。利用一种新颖的测量方法和一个Java原型实现,我们证明了我们的方法实现了高精度(≈123μβ)。此外,它具有高度的可扩展性且与平台无关。由于我们的同步方法在应用层运行,因此它既适用于有线网络也适用于无线网络。

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