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On the performance of multichannel digital backpropagation in high-capacity long-haul optical transmission

机译:大容量长距离光传输中多通道数字反向传播的性能

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摘要

The performance of digital backpropagation (DBP) equalization when applied over multiple channels to compensate for the nonlinear impairments in optical fiber transmission systems is investigated. The impact of a suboptimal multichannel DBP operation is evaluated, where implementation complexity is reduced by varying parameters such as the number of nonlinear steps per span and sampling rate. Results have been obtained for a reference system consisting of a 5×32 Gbaud PDM-16QAM superchannel with 33 GHz subchannel spacing and Nyquist pulse shaping under long-haul transmission. The reduction in the effectiveness of the algorithm is evaluated and compared with the ideal gain expected from the cancellation of the nonlinear signal distortion. The detrimental effects of polarization mode dispersion (PMD) with varying DBP bandwidth are also studied. Key parameters which ensure the effectiveness of multichannel DBP are identified.
机译:研究了将数字反向传播(DBP)均衡应用于多通道以补偿光纤传输系统中的非线性损伤的性能。评估了次优多通道DBP操作的影响,其中通过更改参数(例如,每跨度的非线性步数和采样率)降低了实现复杂性。已经获得了一个参考系统的结果,该参考系统由5×32 Gbaud PDM-16QAM超级信道组成,具有33 GHz子信道间隔,并且在长距离传输下具有Nyquist脉冲整形。对算法有效性的降低进行了评估,并将其与从消除非线性信号失真中获得的理想增益进行比较。还研究了偏振模色散(PMD)随DBP带宽变化的不利影响。确定了确保多通道DBP有效性的关键参数。

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