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Digital nonlinearity compensation in high-capacity optical communication systems considering signal spectral broadening effect

机译:考虑信号频谱展宽效应的大容量光通信系统中的数字非线性补偿

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摘要

Nyquist-spaced transmission and digital signal processing have proved effective in maximising the spectral efficiency and reach of optical communication systems. In these systems, Kerr nonlinearity determines the performance limits, and leads to spectral broadening of the signals propagating in the fibre. Although digital nonlinearity compensation was validated to be promising for mitigating Kerr nonlinearities, the impact of spectral broadening on nonlinearity compensation has never been quantified. In this paper, the performance of multi-channel digital back-propagation (MC-DBP) for compensating fibre nonlinearities in Nyquist-spaced optical communication systems is investigated, when the effect of signal spectral broadening is considered. It is found that accounting for the spectral broadening effect is crucial for achieving the best performance of DBP in both single-channel and multi-channel communication systems, independent of modulation formats used. For multi-channel systems, the degradation of DBP performance due to neglecting the spectral broadening effect in the compensation is more significant for outer channels. Our work also quantified the minimum bandwidths of optical receivers and signal processing devices to ensure the optimal compensation of deterministic nonlinear distortions.udud
机译:奈奎斯特间隔传输和数字信号处理已被证明可以有效地最大化光通信系统的频谱效率和覆盖范围。在这些系统中,克尔非线性决定了性能极限,并导致了在光纤中传播的信号的频谱展宽。尽管数字非线性补偿已被证明可以缓解Kerr非线性,但光谱加宽对非线性补偿的影响从未得到量化。在考虑信号频谱展宽的影响的情况下,研究了多通道数字反向传播(MC-DBP)在奈奎斯特间隔光通信系统中补偿光纤非线性的性能。已经发现,考虑频谱扩展效应对于在单通道和多通道通信系统中获得DBP的最佳性能至关重要,这与所使用的调制格式无关。对于多通道系统,由于忽略补偿中的频谱展宽效应而导致的DBP性能下降对于外部通道更为明显。我们的工作还量化了光接收器和信号处理设备的最小带宽,以确保对确定性非线性失真进行最佳补偿。 ud ud

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