Clock calibration using fluorescent lighting

Zhenjiang Li, Cheng Li, Wenwei Chen, Jingyao Dai, Mo Li, Xiangyang Li, Yunhao Liu
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引用次数: 7

Abstract

In this demo, we propose a novel clock calibration approach called FLIGHT, which leverages the fact that the fluorescent light intensity changes with a stable period that equals half of the alternating current's. By tuning to the light emitted from indoor fluorescent lamps, FLIGHT can intelligently extract the light period information and achieve network wide time calibration by referring to such a common time reference. We address a series of practical challenges and implement FLIGHT in TelosB motes. In this demonstration, we will show that by taking advantage of the stability of the AC frequency, the detected light intensity, even from different lamps, exhibits a consistent and stable period. FLIGHT can achieve tightly synchronized time with low energy consumption. In addition, since FLIGHT is independent to the network message exchange, time synchronization can be retained even when the network is temporarily disconnected. Such characteristics particularly suit various mobility-enabled scenarios.
使用荧光灯校正时钟
在这个演示中,我们提出了一种新的时钟校准方法,称为FLIGHT,它利用了荧光灯强度随稳定周期变化的事实,该周期等于交流电的一半。FLIGHT通过对室内荧光灯发出的光进行调谐,智能提取光周期信息,并参照这一共同的时间基准实现全网时间校准。我们解决了一系列实际挑战,并在TelosB motes中实现了FLIGHT。在这个演示中,我们将展示利用交流频率的稳定性,即使来自不同的灯,检测到的光强度也会呈现出一致和稳定的周期。FLIGHT可以实现时间紧密同步,能耗低。此外,由于FLIGHT独立于网络消息交换,因此即使在网络暂时断开连接时也可以保持时间同步。这些特征特别适合各种支持移动性的场景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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