Parameter selection in optical networks with variable-code-rate superchannels

Andre L. N. Souza, Eduardo J. Mayoral Ruiz, J. Reis, L. Carvalho, Juliano R. F. Oliveira, D. Arantes, M. H. M. Costa, D. Mello
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引用次数: 13

Abstract

Future flexible transceivers will be able to adjust modulation format, number of subcarriers, symbol rate, and forward error correction (FEC) scheme, according to channel and network conditions. This paper uses a combination of theoretical derivations and experimental results to recommend the best set of parameters to satisfy a specific demand to be routed along the network. In particular, for a given required transparent reach and desired net bit rate, and assuming an FEC scheme with a constant gap to capacity, the paper provides a set of modulation format, number of subcarriers, symbol rate, and code rate, which requires minimum bandwidth, while offering a conveniently low bit error rate (in optical systems, typically 10-15). We observed that optimum operating points required FEC schemes with overheads ranging from almost 0 to 145%, which is an important guideline for future flexible optical communications systems.
变码率超级信道光网络的参数选择
未来的柔性收发器将能够根据信道和网络条件调整调制格式、子载波数量、符号速率和前向纠错(FEC)方案。本文采用理论推导和实验结果相结合的方法来推荐一组最佳参数,以满足沿网络路由的特定需求。特别是,对于给定所需的透明距离和期望的净比特率,并假设具有恒定容量间隙的FEC方案,本文提供了一组调制格式,子载波数量,符号率和码率,它需要最小的带宽,同时提供方便的低误码率(在光学系统中,通常为10-15)。我们观察到,最佳工作点需要FEC方案,开销范围从几乎0到145%,这是未来柔性光通信系统的重要指导方针。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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