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首页> 外文期刊>Journal of Lightwave Technology >41.5-Tb/s Transmission Over 549 km of Field Deployed Fiber Using Throughput Optimized Probabilistic-Shaped 144QAM
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41.5-Tb/s Transmission Over 549 km of Field Deployed Fiber Using Throughput Optimized Probabilistic-Shaped 144QAM

机译:使用吞吐量优化型概率144QAM在549公里现场部署光纤上以41.5Tb / s的速度传输

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摘要

We demonstrate high spectral efficiency transmission over 549 km of field deployed single-mode fiber using probabilistic-shaped 144QAM. We achieved 41.5 Tb/s over the C-band at a spectral efficiency of 9.02 b/s/Hz using 32-Gbaud channels at a channel spacing of 33.33 GHz, and 38.1 Tb/s at a spectral efficiency of 8.28 b/s/Hz using 48-Chaud channels at a channel spacing of 50 CHz. To the best of our knowledge, these are the highest total capacities and spectral efficiencies reported in a metro field environment using C-band only. In high spectral efficiency transmission, it is necessary to optimize back-to-back performance in order to maximize the link loss margin. Our results are enabled by the joint optimization of constellation shaping and coding overhead to minimize the gap to Shannon's capacity, transmitter- and receiver-side digital backpropagation, signal clipping optimization, and I/Q imbalance compensation.
机译:我们展示了使用概率形状的144QAM在549公里现场部署的单模光纤上的高光谱效率传输。我们使用32 Gbaud信道以33.33 GHz的信道间隔在9.02 b / s / Hz的频谱效率下在C波段上达到41.5 Tb / s,在频谱效率为8.28 b / s /的情况下达到38.1 Tb / s使用48个Chaud通道以50 CHz的通道间隔产生Hz。据我们所知,这是仅使用C波段的地铁现场环境中报告的最高总容量和频谱效率。在高频谱效率传输中,有必要优化背靠背性能以最大化链路损耗裕量。通过星座优化和编码开销的联合优化,可以最大程度地减少与Shannon容量的差距,发射机和接收机端的数字反向传播,信号削波优化以及I / Q不平衡补偿,从而获得我们的结果。

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