Coherent 100G nonlinear compensation with single-step digital backpropagation

M. Secondini, S. Rommel, F. Fresi, E. Forestieri, G. Meloni, L. Potí
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引用次数: 7

Abstract

Enhanced-SSFM digital backpropagation (DBP) is experimentally demonstrated and compared to conventional DBP. A 112 Gb/s PM-QPSK signal is transmitted over a 3200km dispersion-unmanaged link. The intradyne coherent receiver includes single-step digital backpropagation based on the enhanced- SSFM algorithm. In comparison, conventional DBP requires twenty steps to achieve the same performance. An analysis of the computational complexity and structure of the two algorithms reveals that the overall complexity and power consumption of DBP are reduced by a factor of 16 with respect to a conventional implementation, while the computation time is reduced by a factor of 20. As a result, the proposed algorithm enables a practical and effective implementation of DBP in real-time optical receivers, with only a moderate increase of the computational complexity, power consumption, and latency with respect to a simple feed-forward equalizer for dispersion compensation.
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相干100G非线性补偿单步数字反向传播
实验证明了增强型ssfm数字反向传播(DBP),并与传统DBP进行了比较。112gb /s的PM-QPSK信号在3200公里的非分散管理链路上传输。内相干接收机包括基于增强型SSFM算法的单步数字反向传播。相比之下,传统DBP需要20个步骤才能达到相同的性能。对这两种算法的计算复杂度和结构的分析表明,DBP的总体复杂度和功耗比传统实现减少了16倍,而计算时间减少了20倍。因此,该算法能够在实时光接收机中实现实际有效的DBP,与用于色散补偿的简单前馈均衡器相比,仅略微增加了计算复杂度、功耗和延迟。
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