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In-Band Asymmetry Compensation for Accurate Time/Phase Transport over Optical Transport Network

机译:带内不对称补偿用于通过光传输网络进行准确的时间/相位传输

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摘要

The demands of precise time/phase synchronization have been increasing recently due to the next generation of telecommunication synchronization. This paper studies the issues that are relevant to distributing accurate time/phase over optical transport network (OTN). Each node and link can introduce asymmetry, which affects the adequate time/phase accuracy over the networks. In order to achieve better accuracy, protocol level full timing support is used (e.g., Telecom-Boundary clock). Due to chromatic dispersion, the use of different wavelengths consequently causes fiber link delay asymmetry. The analytical result indicates that it introduces significant time error (i.e., phase offset) within 0.3397 ns/km in C-band or 0.3943 ns/km in L-band depending on the wavelength spacing. With the proposed scheme in this paper, the fiber link delay asymmetry can be compensated relying on the estimated mean fiber link delay by the Telecom-Boundary clock, while the OTN control plane is responsible for processing the fiber link delay asymmetry to determine the asymmetry compensation in the timing chain.
机译:由于下一代电信同步,近来精确时间/相位同步的需求不断增长。本文研究与通过光传输网络(OTN)分配准确的时间/相位有关的问题。每个节点和链路都会引入不对称性,这会影响网络上足够的时间/相位精度。为了获得更好的准确性,使用了协议级别的全定时支持(例如,电信边界时钟)。由于色散,使用不同的波长会导致光纤链路延迟不对称。分析结果表明,根据波长间隔,它会在C波段0.3397 ns / km或L波段0.3943 ns / km范围内引入明显的时间误差(即相位偏移)。利用本文提出的方案,可以根据电信边界时钟估计的平均光纤链路延迟来补偿光纤链路延迟不对称性,而OTN控制面则负责处理光纤链路延迟不对称性以确定不对称性补偿在时间链上。

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