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Sundial: Using Sunlight to Reconstruct Global Timestamps

机译:日d:使用阳光来重构全局时间戳

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This paper investigates postmortem timestamp reconstruction in environmental monitoring networks. In the absence of a time-synchronization protocol, these networks use multiple pairs of (local, global) timestamps to retroactively estimate the motes' clock drift and offset and thus reconstruct the measurement time series. We present Sundial, a novel offline algorithm for reconstructing global timestamps that is robust to unreliable global clock sources. Sundial reconstructs timestamps by correlating annual solar patterns with measurements provided by the motes' inexpensive light sensors. The surprising ability to accurately estimate the length of day using light intensity measurements enables Sundial to be robust to arbitrary mote clock restarts. Experimental results, based on multiple environmental network deployments spanning a period of over 2.5 years, show that Sundial achieves accuracy as high as 10 parts per million (ppm), using solar radiation readings recorded at 20 minute intervals.
机译:本文研究了环境监测网络中的事后时间戳重建。在没有时间同步协议的情况下,这些网络使用多对(本地,全局)时间戳来追溯估计节点的时钟漂移和偏移,从而重建测量时间序列。我们介绍了Sundial,这是一种用于重构全局时间戳的新颖离线算法,该算法对不可靠的全局时钟源具有鲁棒性。日d通过将年度太阳模式与尘埃廉价的光传感器提供的测量值相关联来重建时间戳。日light使用光强度测量来准确估计一天的长度的惊人功能使日d能够对任意的尘埃时钟重启具有鲁棒性。基于跨越2.5年的多个环境网络部署的实验结果表明,日Sun使用以20分钟为间隔记录的太阳辐射读数实现了高达百万分之10的精度。

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