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Advanced C+L-Band Transoceanic Transmission Systems Based on Probabilistically Shaped PDM-64QAM

机译:基于概率形状的PDM-64QAM的先进的C + L波段越洋传输系统

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摘要

We review the most recent advanced concepts and methods employed in the cutting-edge spectrally efficient coherent fiber-optic transoceanic transmission systems, such as probabilistic shaping, adaptive digital nonlinear compensation, rate-adaptive spatially coupled low-density parity check codes, and dual-band C+L-band transmission. Building upon all these concepts and methods, we demonstrate transmission of 179 channels carrying a record net data rate of 65 Tb/s over 6600 km, achieving a spectral efficiency of 7.3 b/s/Hz, and a record average per-channel net bit rate of 363.1 Gb/s. We provide numerical and experimental results, which serve us to comment on the pertinence of the physicist's intuitive measure of performance, the signal-to-noise ratio, versus the information theorist's more accurate measure, the generalized mutual information, for the systems under study.
机译:我们回顾了在尖端的频谱高效相干光纤跨洋传输系统中采用的最新先进概念和方法,例如概率整形,自适应数字非线性补偿,速率自适应的空间耦合低密度奇偶校验码和双频段C + L频段传输。在所有这些概念和方法的基础上,我们演示了179个信道的传输,在6600 km上传输的记录的净数据速率为65 Tb / s,频谱效率达到7.3 b / s / Hz,并且创下了平均的每通道净位记录速率为363.1 Gb / s。我们提供了数值和实验结果,这有助于我们评论物理学家对性能的直观衡量,信噪比与信息理论家更准确的衡量,广义互信息的相关性。

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