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首页> 外文期刊>Photonic network communications >Fiber nonlinearity compensation of WDM-PDM 16-QAM signaling using multiple optical phase conjugations over a distributed Raman-amplified link
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Fiber nonlinearity compensation of WDM-PDM 16-QAM signaling using multiple optical phase conjugations over a distributed Raman-amplified link

机译:使用分布式拉曼放大链路上的多个光学相位共轭的WDM-PDM 16-QAM信号的光纤非线性补偿

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In this paper, multiple optical phase conjugation (OPC) devices were used along the optical link to improve the performance of an Gbps polarization-division multiplexing 16-state quadrature amplitude modulation signaling, producing total bit rate of 2.048 Tbps. A 50-GHz spaced, eight-channel wavelength division multiplexing (WDM) communication system was considered using 912 km dispersion-unmanaged standard single-mode fiber link with backward distributed Raman pumps. The performance of a dual-pump highly nonlinear fiber-based OPC was investigated analytically using a set of eight nonlinear Schrodinger equations taking into account the effect of polarization. Simulation results were compared with the case of mid-span optical phase conjugation (MS-OPC) compensation scheme showing better performance in terms of achievable Q-factor, optimal signal launched power, and the total length of the transmission link. In 256 Gbps, single-channel scenario, a Q-factor improvement of 1.35 dB was achieved and the nonlinear threshold was increased by 4 dB compared to the case of MS-OPC. Moreover, using multiple OPC led to increase the length of the transmission link by 30.7% compared with the case of MS-OPC. In 2.048 Tbps WDM system, a maximum Q-factor of 9.27 dB over the same link was obtained showing an improvement of 0.62 dB over the MS-OPC case. The simulation results were compared with published analogous experimental data showing very good agreement.
机译:在本文中,沿光链路使用了多个光相位共轭(OPC)器件来改善Gbps偏振分频多路复用16状态正交幅度调制信号的性能,产生的总比特率为2.048 Tbps。考虑了使用912 km色散非管理型标准单模光纤链路和后向分布拉曼泵浦的50 GHz间隔八通道波分复用(WDM)通信系统。考虑到极化的影响,使用一组八个非线性Schrodinger方程对一组双泵,高度非线性光纤OPC的性能进行了分析研究。将仿真结果与中跨光学相位共轭(MS-OPC)补偿方案的情况进行了比较,该方案在可实现的Q因子,最佳信号发射功率和传输链路的总长度方面表现出更好的性能。在256 Gbps单通道情况下,与MS-OPC相比,Q因子提高了1.35 dB,非线性阈值提高了4 dB。此外,与MS-OPC相比,使用多个OPC导致传输链路的长度增加了30.7%。在2.048 Tbps WDM系统中,在同一链路上获得的最大Q因子为9.27 dB,与MS-OPC情况相比,提高了0.62 dB。将模拟结果与已发表的类似实验数据进行了比较,显示出很好的一致性。

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