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Assessment of Intrachannel Nonlinear Compensation for 112 Gb/s Dual-Polarization 16QAM Systems

机译:112 Gb / s双极化16QAM系统的通道内非线性补偿评估

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摘要

For 112 Gb/s dual-polarization 16-ary quadrature amplitude modulation systems, the performance and complexity of the low-pass filter (LPF)-assisted digital back-propagation (DBP) algorithm for mitigating intrachannel fiber nonlinearity are investigated. Comparison is made with both linear equalization and the standard DBP algorithm for single-channel transmission (simulation and experiment) and for wavelength division multiplexed (WDM) transmission with channel spacings of 50 and 35 GHz (simulation). With optimized values for the algorithm parameters, the simulation results show that, compared to linear equalization, the 0.2 steps/span LPF-assisted DBP algorithm can increase the transmission distance by 84%, 40%, and 17% for a single-channel, 50 GHz channel-spaced WDM, and 35 GHz channel-spaced WDM transmission, respectively. These improvements in the transmission distance are 54%, 75%, and 77% of those achieved with the 4 steps/span standard DBP algorithm but at considerably lower complexity. Single-channel experimental results show that the 0.25 steps/span LPF-assisted DBP algorithm can increase the transmission distance by 43%, which is 68% of the improvement achieved with the 4 steps/span standard DBP algorithm. Compared to the standard DBP algorithm, the LPF-assisted DBP algorithm can allow a reduction in the number of steps/span, but with an increased computational complexity for each step. The two DBP algorithms are compared in terms of the number of real multiplications per bit, thus allowing the algorithm with lower complexity to be determined at a given level of performance.
机译:对于112 Gb / s双极化16进制正交幅度调制系统,研究了用于减轻通道内光纤非线性的低通滤波器(LPF)辅助数字反向传播(DBP)算法的性能和复杂性。使用线性均衡和标准DBP算法对单通道传输(仿真和实验)以及信道间隔为50和35 GHz的波分复用(WDM)传输进行了比较(仿真)。通过优化算法参数的值,仿真结果表明,与线性均衡相比,0.2步/跨度LPF辅助DBP算法可以使单通道传输距离增加84%,40%和17%, 50 GHz信道间隔的WDM和35 GHz信道间隔WDM传输。传输距离的这些改进分别是使用4步/跨度标准DBP算法所实现的54%,75%和77%,但复杂度却大大降低。单通道实验结果表明,0.25步/跨LPF辅助DBP算法可以将传输距离增加43%,这是4步/跨标准DBP算法所实现的改进的68%。与标准DBP算法相比,LPF辅助的DBP算法可以减少步数/跨度,但每个步骤的计算复杂性都会增加。根据每位的实际乘法数比较了这两种DBP算法,因此可以在给定的性能水平上确定具有较低复杂度的算法。

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