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Time and Frequency Transfer and Dissemination Methods Using Optical Fiber Network

机译:利用光纤网络的时间和频率传输与传播方法

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摘要

In the time and frequency transfer and dissemination field, it is important to provide cost effective remote frequency calibration services with an uncertainty of around 10~(-12) for end users. It is also required to develop ultra precise transfer methods with an order of 10~(-15) or better uncertainty for the comparison between ultra stable frequency standards which are under developing. This study shows two methods using optical fiber networks to satisfy these demands. First, it is an economical remote calibration method using existing synchronous optical fiber communication networks. The measured frequency stability (the Allan deviation) of the transmission clock is 2x10~(-13) for an averaging time of one day. The result indicates the method is promising for the simple remote frequency calibration service. Second, it is an ultra precise two-way optical fiber time and frequency transfer method using a newly proposed bi-directional optical amplifier. In this method, wavelength division multiplexing (WDM) signals are transmitted along a single optical fiber. The preliminary measured frequency stability is less than 10~(-15) (τ =10~4 s) for a 100-km-long fiber with the bi-directional amplifier. It suggests that the method has capability for improving TAI (International Atomic Time) and UTC (Coordinated Universal Time).
机译:在时间和频率传输和传播领域,为最终用户提供经济有效的远程频率校准服务非常重要,不确定性约为10〜(-12)。还需要开发具有10〜(-15)或更好不确定度的超精密传输方法,以比较正在开发的超稳定频率标准。这项研究显示了两种使用光纤网络满足这些需求的方法。首先,它是一种使用现有同步光纤通信网络的经济型远程校准方法。在一天的平均时间内,测得的传输时钟的频率稳定性(Allan偏差)为2x10〜(-13)。结果表明该方法对于简单的远程频率校准服务是有希望的。其次,它是一种使用新型双向光放大器的超精密双向光纤时间和频率传输方法。在这种方法中,波分复用(WDM)信号沿单个光纤传输。对于使用双向放大器的100公里长的光纤,初步测得的频率稳定性小于10〜(-15)(τ= 10〜4 s)。这表明该方法具有改善TAI(国际原子时间)和UTC(协调世界时)的能力。

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