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Bidirectional Optical Amplification in Long-Distance Two-Way Fiber-Optic Time and Frequency Transfer Systems

机译:长距离双向光纤时间和频率传输系统中的双向光放大

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In this paper, the transmission of the time and/or frequency signals (e.g., 1 pulse per second and 10 MHz) coded on the optical carrier by means of an on–off intensity modulation in the two-way fiber-optic link is considered. It is assumed that the bidirectional optical amplification in the single piece of an erbium-doped fiber is exploited to compensate the attenuation of the optical path. Such configuration of the amplifiers, offering the highest possible symmetry of the propagation conditions in both directions, is well suited for the two-way transfer method exploiting the symmetry of the link. We proposed the method of estimating interfering signals and jitter, which appear at both sides of such bidirectional fiber link because of Rayleigh backscattering and amplified spontaneous emission. This method is further exploited for finding the gains of bidirectional amplifiers, allowing optimization of the performance of the link. The experiments done with 120- and 220-km-long links, incorporating one and three amplifiers, respectively, confirmed theoretical predictions and proved that the single-path bidirectional amplifiers without any components separating the directions are useful for time or RF frequency transfer. During the experiments, both field-deployed telecommunication cables and the fibers spooled in the laboratory were used. Presented methods of analysis and optimization are useful for designing and evaluating the fiber-optic links incorporating single-path bidirectional fiber-optic amplifiers and exploiting intensity modulation for time and/or frequency transfer.
机译:在本文中,考虑了通过双向光纤链路中的开-关强度调制传输在光载波上编码的时间和/或频率信号(例如,每秒1个脉冲和10 MHz) 。假设利用单掺光纤中的双向光放大来补偿光路的衰减。放大器的这种配置可在两个方向上提供最大可能的传播条件对称性,非常适合于利用链路对称性的双向传输方法。我们提出了一种估计干扰信号和抖动的方法,这些方法由于瑞利反向散射和放大的自发发射而出现在这种双向光纤链路的两侧。进一步利用该方法来查找双向放大器的增益,从而优化链路性能。在分别包含一个和三个放大器的120公里和220公里长的链路上进行的实验证实了理论预测,并证明了没有任何成分分开方向的单路径双向放大器对于时间或RF频率传输很有用。在实验过程中,使用了现场部署的电信电缆和在实验室中缠绕的光纤。提出的分析和优化方法可用于设计和评估包含单路径双向光纤放大器的光纤链路,并利用强度调制进行时间和/或频率传输。

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