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Adaptive Digital Equalization in Optical Coherent Receivers With Stokes-Space Update Algorithm

机译:具有斯托克斯空间更新算法的光相干接收机中的自适应数字均衡

摘要

In this paper, we describe a novel update algorithm for the filter coefficients of the adaptive digital equalizer in coherent receivers, which is based on error signals evaluated in Stokes space and is insensitive to both phase-noise and frequency-offset. We also introduce an optimized decision rule in the Stokes space, which takes into account the exact statistics of noise and yields a performance improvement with respect to the minimum distance decision criterion. We compare the performance of the new algorithm to the standard constant-modulus algorithm (CMA) for polarization-multiplexed 16QAM modulation, achieving similar performance in the absence of phase noise, with comparable complexity. Differently from CMA, the proposed Stokes-space algorithm allows us to remove the phase offset between polarizations, thus enabling the use of a joint carrier-phase estimation algorithm on both polarizations, which in turns yields a nearly doubled phase noise tolerance
机译:在本文中,我们描述了一种新的针对相干接收机中的自适应数字均衡器的滤波器系数的更新算法,该算法基于Stokes空间中评估的误差信号,并且对相位噪声和频率偏移均不敏感。我们还在Stokes空间中引入了一个优化的决策规则,该规则考虑了噪声的精确统计信息,并在最小距离决策标准方面产生了性能改进。我们将新算法的性能与偏振多路复用16QAM调制的标准恒模算法(CMA)进行了比较,在没有相位噪声的情况下实现了类似的性能,并且具有相当的复杂性。与CMA不同,提出的Stokes空间算法使我们能够消除极化之间的相位偏移,从而能够在两个极化上使用联合载波相位估计算法,从而产生几乎两倍的相位噪声容限

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