瑞典商用DWDM通信网络中的双向相干频率传输

S. Ebenhag, M. Zelan, P. Hedekvist, M. Karlsson, Borje Josefsson
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引用次数: 7

摘要

位于boratlas的瑞典SP技术研究所和瑞典哥德堡查尔姆斯大学之间正在建立一条实验性光纤链路。单向光纤长度约60公里,在瑞典大学网络(SUNET)中实现。该项目的目的是评估使用DWDM(密集波分复用)系统光纤对中的波长发送稳定光频率时的信号质量。实验采用DWDM中波长为1542.14 nm的信道。该波长在C波段内,因此与该网络中常见的掺铒放大器兼容。该系统的另一个目标是超稳定,对应于τ = 1 s的稳定性1×10-13,以及提供将监测的超稳定频率分配给网络内的多个用户的能力,并具有未来可追溯性到UTC (SP)(瑞典国内实现的协调世界时)。利用基于平行光纤中的单向光信号的光纤链路进行光频率传输的测量,在自由运行设置和实验室环境中显示出有希望的结果。分数阶频率稳定性,分析为重叠艾伦偏差,在τ = 10 s时近似为3×10-13,在105 s时几乎为1×10-14。
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Two-way coherent frequency transfer in a commercial DWDM communication network in Sweden
An experimental fiber link is being established between SP Technical Research Institute of Sweden in Borås and Chalmers University of Gothenburg in Sweden. The one way fiber length is about 60 km and implemented in SUNET (Swedish University Network). The aim of the project is to evaluate the signal quality when sending a stable optical frequency utilizing a wavelength in a DWDM (Dense Wavelength Division Multiplexing) system fiber pair. The experiment uses a channel in the DWDM with the wavelength of 1542.14 nm. This wavelength is within the C band and is therefore compatible with common Erbium doped amplifiers in this network. Another aim of the system is to be ultra-stable which corresponds to a stability of 1×10-13 for τ = 1 s as well as providing the ability to distribute monitored ultra-stable frequency with a future traceability to UTC (SP) (National realization of Universal Time Coordinated within Sweden) to multiple users within the network. Measurements of an optical frequency transfer using a fiber-link based on unidirectional light signals in parallel fibers have shown promising results in a free-running setup and in a lab environment. The fractional frequency stability, analyzed as the Overlapping Allan deviation, is approximately 3×10-13 at τ = 10 s and almost 1×10-14 at 105 s.
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