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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Electrical Regeneration for Long-Haul Fiber-Optic Time and Frequency Distribution Systems
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Electrical Regeneration for Long-Haul Fiber-Optic Time and Frequency Distribution Systems

机译:长途光纤时间和频率分配系统的电气再生

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摘要

In recent years fiber-optic-based long-haul installations for time and frequency (T&F) distribution have become operational at various sites. The common practice to cope with large attenuation of long fiber path is to use bidirectional optical amplifiers. This, however, becomes insufficient in case of very long links and/or long spans between amplifiers, because of unavoidable deterioration of the signal-to-noise ratio (SNR). In this article, we present a solution where the optical signal amplification is combined with optical-electrical-optical (OEO) regeneration, performed in a few points along the link. We analyze the impact of replacing some optical amplifiers with OEOs and demonstrate the resulting improvement in terms of SNR of the received optical signal and the phase noise at the output of the T&F distribution system. Laboratory experiments performed with both spooled and metropolitan-area fibers (total length up to 900 km) confirmed the theoretical predictions and showed that placing the OEO regenerators in appropriate points along the link allows reaching the required SNR.
机译:近年来,用于时间和频率(T&F)分布的光纤的长途安装在各个地点都在运行。应对长纤维路径大衰减的常见做法是使用双向光放大器。然而,在放大器之间的长链接和/或长跨度的情况下,这变得不足,因为对信噪比(SNR)不可避免地恶化。在本文中,我们介绍了一种解决方案,其中光学信号放大与光学电 - 光学(OEO)再生组合,在沿着链路的几个点中执行。我们分析用OEOS替换一些光放大器的影响,并在接收的光信号的SNR方面证明所得到的改进和T&F分配系统的输出处的相位噪声。用假轴和大都市区纤维进行的实验室实验(总长度高达900公里)证实了理论上的预测,并显示了将OEO再生器沿着链接的适当点放置允许到达所需的SNR。

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