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首页> 外文期刊>Journal of Lightwave Technology >Submarine Transmission Systems Using Digital Nonlinear Compensation and Adaptive Rate Forward Error Correction
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Submarine Transmission Systems Using Digital Nonlinear Compensation and Adaptive Rate Forward Error Correction

机译:使用数字非线性补偿和自适应速率前向纠错的海底传输系统

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摘要

We report on a full C + L-band erbium-doped fiber amplified (EDFA) submarine transmission experiment of 178 wavelength-division multiplexed channels of 49-GBd polarization multiplexed 16QAM signals, achieving 54.2 Tb/s after 6600 km, with a record per-channel average net bit rate of 304.5 Gb/s. Digital backpropagation and time-domain perturbative nonlinearity compensation were alternatively applied to all channels and their respective benefits, in terms of throughput increase, reach increase, and complexity, were addressed. Multiple-rate spatially coupled low density parity check forward error correction codes with a novel rate optimization algorithm were employed. The power consumption of the power feeding equipment of our EDFA-only amplification scheme was analyzed and compared with that of hybrid EDFA Raman amplification. We also provided numerical and theoretical performance analysis of nonlinear uncompensated/compensated systems.
机译:我们报告了49 GBd偏振多路复用16QAM信号的178个波分多路复用信道的完整C + L波段掺fiber光纤放大(EDFA)海底传输实验,在6600 km之后达到了54.2 Tb / s,每条记录-信道平均净比特率是304.5 Gb / s。将数字反向传播和时域微扰非线性补偿交替应用到所有通道,并解决了它们在吞吐量增加,覆盖范围增加和复杂性方面的各自优点。采用了具有新型速率优化算法的多速率空间耦合低密度奇偶校验前向纠错码。分析了我们仅EDFA放大方案的供电设备的功耗,并将其与混合EDFA拉曼放大的功耗进行了比较。我们还提供了非线性无补偿/补偿系统的数值和理论性能分析。

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