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Reverse Flooding: exploiting radio interference for efficient propagation delay compensation in WSN clock synchronization

机译:反向泛洪:利用无线电干扰在WsN时钟同步中实现有效的传播延迟补偿

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摘要

Clock synchronization is a necessary component in modern distributed systems, especially WSN. Despite the great effort and the numerous improvements, the existing synchronization schemes do not yet address the cancellation of propagation delays. Up to a few years ago, this was not perceived as a problem, because the time-stamping precision was a more limiting factor for the accuracy achievable with a synchronization scheme. However, the recent introduction of efficient flooding schemes based on constructive interference has greatly improved the achievable accuracy, to the point where propagation delays can effectively become the main source of error. In this paper, we propose a method to estimate and compensate for the network propagation delays. Our proposal does not require to maintain a spanning tree of the network, and exploits constructive interference even to transmit packets whose content are slightly different. To show the validity of the approach, we implemented the propagation delay estimator on top of the FLOPSYNC-2 synchronization scheme. Experimental results prove the feasibility of measuring propagation delays using off-the-shelf microcontrollers and radio transceivers, and show how the proposed solution allows to achieve sub-microsecond clock synchronization even for networks where propagation delays are significant.
机译:时钟同步是现代分布式系统(尤其是WSN)中必不可少的组件。尽管付出了巨大的努力并做出了许多改进,但是现有的同步方案仍未解决消除传播延迟的问题。直到几年前,这还没有被认为是一个问题,因为时间戳精度是同步方案所能达到的精度的更大限制因素。然而,最近引入的基于相长干涉的有效洪泛方案极大地提高了可达到的精度,以至于传播延迟可以有效地成为主要的误差源。在本文中,我们提出了一种估计和补偿网络传播延迟的方法。我们的建议不需要维护网络的生成树,甚至可以利用建设性干扰来传输内容略有不同的数据包。为了证明该方法的有效性,我们在FLOPSYNC-2同步方案的基础上实现了传播延迟估计器。实验结果证明了使用现成的微控制器和无线电收发器测量传播延迟的可行性,并显示了所提出的解决方案如何实现亚微秒时钟同步,即使传播延迟很大的网络也是如此。

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