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Experimental Demonstration of Polarization-Dependent Loss Monitoring and Compensation in Stokes Space for Coherent Optical PDM-OFDM

机译:Stokes空间中相干光PDM-OFDM的偏振相关损耗监测和补偿的实验演示

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摘要

We have recently demonstrated polarization demultiplexing in Stokes space (SS-PDM), which is susceptible to polarization-dependent loss (PDL). In this paper, we apply the method of PDL monitoring and compensation in Stokes space to enhance SS-PDM. It is applied for each subcarrier in the frequency domain after SS-PDM. Because each subcarrier has a much lower speed and narrower bandwidth, the polarization effects that it experiences can be treated as flat. This method can work for different modulation formats on orthogonal frequency-division multiplexing (OFDM) subcarriers and only needs a small number of samples for convergence. In simulation, when the PDL is less than 3.5 dB, it significantly improves the performance of SS-PDM and is comparable with the conventional channel estimation based on training symbols (TSs). We also conduct the experiments of 66.6-Gb/s coherent optical PDM-OFDM with 4QAM subcarrier modulation over 5440-km SSMF and 133.3-Gb/s coherent optical PDM-OFDM with 16QAM subcarrier modulation over 960-km SSMF, respectively. The experimental results show that this method improves the performance of SS-PDM significantly and can match the performance of channel estimation based on TSs. To the best of our knowledge, this is the first experimental validation of PDL monitoring and compensation in Stokes space.
机译:我们最近展示了斯托克斯空间(SS-PDM)中的偏振解复用,该偏振解复用容易受到偏振相关损耗(PDL)的影响。本文采用Stokes空间中的PDL监测和补偿方法来增强SS-PDM。它在SS-PDM之后应用于频域中的每个子载波。因为每个子载波的速度要低得多,带宽要窄一些,所以它所经历的极化效应可以看作是平坦的。该方法可以在正交频分复用(OFDM)子载波上适用于不同的调制格式,并且只需要少量样本即可收敛。在仿真中,当PDL小于3.5 dB时,它将显着提高SS-PDM的性能,并且可以与基于训练符号(TS)的常规信道估计相媲美。我们还分别进行了在5440 km / s SSMF上具有4QAM子载波调制的66.6 Gb / s相干光PDM-OFDM和在960 km / s SSMF上具有16QAM子载波调制的133.3 Gb / s相干光PDM-OFDM的实验。实验结果表明,该方法显着提高了SS-PDM的性能,可以与基于TS的信道估计性能相匹配。据我们所知,这是斯托克斯空间中PDL监视和补偿的首次实验验证。

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