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Training Symbol Assisted in-Band OSNR Monitoring Technique for PDM-CO-OFDM System

机译:PDM-CO-OFDM系统中训练符号辅助带内OSNR监测技术

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摘要

We proposed and demonstrated an in-band optical signal-to-noise ratio (OSNR) monitoring method for a polarization-division-multiplexed coherent optical orthogonal frequency-division-multiplexing (PDM-CO-OFDM) system. OSNR of the PDM signals on both polarization tributaries can be simultaneously monitored by calculating the electrical SNR with low complexity by taking advantage of the uncorrelation property between the noise and training symbol, which is used for conventional frame synchronization. This OSNR monitoring technique is verified in 103.57-Gb/s 16 quadrature amplitude modulation-based PDM CO-OFDM transmission system with 240-1440-km standard single-mode fiber (SSMF) links. Experimental results show that after calibration, the OSNR estimation error is less than 0.6 dB in a dynamic range of 12-27 dB, the estimation remains accurate even after 1440-km SSMF transmission, regardless of the chromatic dispersion and polarization mode dispersion in the fiber. To further investigate the robustness of the proposed OSNR monitoring method, additional simulation is implemented on VPI and MATLAB platform. It turned out to be insensitive to nonlinear effect within reasonable range as our monitoring technique shows good performance with launching power below -2 dBm after 500-km SSMF transmission. The proposed technique could still accurately monitor the individual OSNR of each polarization tributary of the PDM signal even in the presence of 5-dB polarization-dependent loss.
机译:我们提出并证明了一种用于偏振分频复用相干光正交频分复用(PDM-CO-OFDM)系统的带内光信噪比(OSNR)监视方法。通过利用噪声和训练符号之间的不相关特性来计算低复杂度的电SNR,可以同时监测两个极化支路上PDM信号的OSNR,这可用于常规帧同步。该OSNR监视技术已在具有240-1440 km标准单模光纤(SSMF)链路的基于103.57-Gb / s 16正交幅度调制的PDM CO-OFDM传输系统中得到验证。实验结果表明,校准后,在12-27 dB的动态范围内,OSNR估计误差小于0.6 dB,即使在1440 km SSMF传输后,估计仍保持准确,无论光纤中的色散和偏振模色散如何。为了进一步研究所提出的OSNR监视方法的鲁棒性,在VPI和MATLAB平台上进行了附加仿真。事实证明,它对合理范围内的非线性影响不敏感,因为我们的监测技术在500 km SSMF传输后发射功率低于-2 dBm时表现出良好的性能。所提出的技术即使在存在5 dB极化相关损耗的情况下,仍可以准确地监视PDM信号每个极化支路的OSNR。

著录项

  • 来源
    《Lightwave Technology, Journal of》 |2017年第9期|1551-1556|共6页
  • 作者单位

    Next Generation Internet Access National Engineering Laboratory, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, China;

    Next Generation Internet Access National Engineering Laboratory, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, China;

    State Key Laboratory of Optical Communication Technologies and Networks, Wuhan Research Institute of Post and Telecommunication, Wuhan, China;

    State Key Laboratory of Optical Communication Technologies and Networks, Wuhan Research Institute of Post and Telecommunication, Wuhan, China;

    Next Generation Internet Access National Engineering Laboratory, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, China;

    Next Generation Internet Access National Engineering Laboratory, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, China;

    Next Generation Internet Access National Engineering Laboratory, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, China;

    Next Generation Internet Access National Engineering Laboratory, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, China;

    Next Generation Internet Access National Engineering Laboratory, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Optical noise; Signal to noise ratio; Monitoring; Optical polarization; Optical fibers; Optical receivers;

    机译:光学噪声;信噪比;监测;光学偏振;光纤;光学接收器;

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