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Calibrated optical time transfer of UTC(k) for supervision of telecom networks

机译:UTC(k)的校准光学时间转移,用于监督电信网络

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We report on the evaluation of the performance of optical time transfer links connecting a facility of Deutsche Telekom in Bremen with the Physikalisch-Technische Bundesanstalt in Braunschweig. In the current configuration three links have been established, two via a hub in Hannover and one using an independent alternate route. They are equipped with electronically stabilized fiber optic time and frequency transfer systems and parallel operation is maintained since December 2016. A novel method of link calibration, composed of two steps (one performed in the laboratory and the second one in the field), to accurately determine the influence of fiber chromatic dispersion is discussed in detail, and a thorough analysis of the uncertainty budget is given. We show that the time transfer performance achieved is difficult to characterize based on measurements with time interval counters that are the standard equipment in timing laboratories and in the teleconununications sector. In our experiments, values of TDEV at the low ps-level at averaging times between 10(4) to 10(6) s have been achieved. The uncertainty of time transfer (including all kinds of delays) is of the order of 50ps in a cascade of links. The results obtained show that such a kind of link is capable to deliver signals to a remote end with an instability being at least two orders of magnitude below the current requirements included in relevant Recommendations of the International Telecommunication Union-Telecommunication Sector (ITU-T). Moreover, the current implementation would allow primary Cs fountain clocks to be compared at the level of their performance, that is characterized by an uncertainty at the low 10(-16) level and a frequency instability of the same order of magnitude at 1 d averaging.
机译:我们报告了在Braunschweig的Physikalisch-Technische Bundesanstalt将Deutsche Telekom的光学时间转移链接性能评估进行了评估。在当前配置中,已经建立了三个链路,两个通过汉诺威的集线器和使用独立替代路线的集线器。它们配备了电子稳定的光纤时间和频率传输系统,自2016年12月以来维持了并联操作。一种新颖的链接校准方法,由两个步骤(在实验室中的第二个),准确地组成),准确地组成确定详细讨论光纤色散的影响,并对不确定性预算进行了彻底的分析。我们表明,实现的时间转移性能难以根据时间间隔计数器的测量来表征,该计数器是定时实验室和远程监听部门的标准设备。在我们的实验中,已经实现了在10(4)至10(6)秒之间的平均时间倍率下的低PS级的TDEV值。时间转移(包括各种延迟)的不确定性是级联链路中的50ps的顺序。得到的结果表明,这种链路能够以不稳定地将信号传送到远端,其在国际电信联合电信部门的相关建议中的当前要求(ITU-T)中的当前要求至少两个数量级。此外,目前的实现将允许在其性能的水平下进行初级CS喷泉时钟,其特征在于低10(-16)水平的不确定性,并且在1d平均值为同一级的频率不稳定性。

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