在RoF环路链路中间点同时发送频率和时间

Zhongze Jiang, Yitang Dai, Feifei Yin, Jianqiang Li, Kun Xu
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引用次数: 2

摘要

我们提出并实验演示了一种基于λ色散诱导射频(RF)锁相的光纤环路任意中间点同步频率和时间信息传递技术。首先通过改变色散光纤链路中光载波的波长以及在中心站中进行射频锁相处理来实现顺时针和逆时针方向的均匀稳定的环路相移或时延。由于自然宽带运行,频率标准信号和时间信号始终在同一波长上传输。在锁环相移的情况下,只需将两个方向的射频信号进行混合,就可以在中间点上恢复出两倍于射频参考角频率的稳定频率标准。同时,获取中心站到任意中间点的两个方向的时延差,通过上述时延差和恒总环路时延,最终得到中间点的精确时间信息。实验证明了具有两个中间点的45公里光纤环路。平均1 s后恢复频率的重叠Allan偏差达到2.04×10-13,平均104 s后恢复频率的重叠Allan偏差达到1.71×10-16。在1秒和103秒时,所传递时间信息的时间偏差(TDEV)分别为19.79 ps和0.896 ps。环路延迟可调范围与光纤长度成正比,因此可以构建非常长的环路链路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous frequency and time delivery on intermediate point of RoF loop link
We present and experimentally demonstrate a technique of simultaneous frequency and time information delivery on arbitrary intermediate point along a fiber loop link based on λ-dispersion-induced radio frequency (RF) phase locking. The equal and stable loop phase shift or time delay, clockwise and anticlockwise, is firstly achieved by altering the optical carrier's wavelength in the dispersive fiber link as well as a RF phase locking process in the central station. Due to the natural broadband operation, the frequency standard and time signal is carried always on the same wavelength. Given the locked loop phase shift, the stable frequency standard with twice the angular frequency of the RF reference can be recovered on intermediate point by simply mixing the RF signals in the two directions. Simultaneously, the delay difference between two directions from the central station to an arbitrary intermediate point is acquired, and the precise time information on the intermediate point is finally obtained through the above delay difference and the constant total loop delay. A 45-km fiber loop with two intermediate points is experimentally demonstrated. The Overlapping Allan Deviation of the recovered frequency reaches 2.04×10-13 after 1-s averaging and 1.71×10-16 after 104-s averaging. The Time Deviation (TDEV) of the delivered time information is measured to be 19.79 ps and 0.896 ps at 1 s and 103 s, respectively. The loop delay tunable range is in direct proportion to the fiber length, giving the capability of constructing a very long loop link.
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