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Adaptive Phase Estimation in the Presence of Nonlinear Phase Noise for Carrier Phase Recovery of PM-QPSK Signals in Coherent Optical Receivers

机译:非线性相位噪声存在下的自适应相位估计,用于相干光接收机中PM-QPSK信号的载波相位恢复

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There are a number of architectural choices to improving feedback and feedforward carrier phase recovery (CPR) algorithms: filter length, filter shape, error signal, etc. The optimal choice depends on the relative strengths of phase noise and additive noise. On the other hand, the optimal average length of CPE used for filtering the phase noise estimate is quite subjective. In principle, a short average length enables fast carrier phase tracking, and a longer average length enables large ASE noise tolerance. Consequently, the optimal average length becomes relatively so short in the presence of fiber nonlinearities when phase noise is large to prevent any symbol with occurring large ASE noise from severely distorting the CPE process. This may affect the stability of CPE performance and subsequently causing performance degradation. For the steady performance of CPE in the presence of large phase noise, this paper proposes adaptive filtering technique to detect and isolate symbols with significantly large ASE noise from the filtering process to improve stability and performance of CPE algorithms. The results showed that the proposed adaptive filtering CPE technique combined with normalization processing in CPE provides about 1.0 dB Q-factor performance improvement over the conventional CPE method in mitigating the combined effects of laser linewidth and fiber nonlinearity for coherent phase-modulated optical signals. The technique automatically identifies and eliminates symbols with significantly large noise from the filtering process to improve stability and estimation accuracy of the carrier phase estimators. The complexity of additional hardware required to implement the scheme is quite simple.
机译:有许多架构选择可以改善反馈和前馈载波相位恢复(CPR)算法:滤波器长度,滤波器形状,误差信号等。最佳选择取决于相位噪声和加性噪声的相对强度。另一方面,用于滤波相位噪声估计值的CPE的最佳平均长度相当主观。原则上,较短的平均长度可以实现快速的载波相位跟踪,而较长的平均长度可以实现较大的ASE噪声容限。因此,当相位噪声较大时,在存在光纤非线性的情况下,最佳平均长度变得相对较短,以防止出现大ASE噪声的任何符号严重扭曲CPE过程。这可能会影响CPE性能的稳定性,并随后导致性能下降。为了在存在较大相位噪声的情况下稳定CPE的性能,本文提出了一种自适应滤波技术,可以从滤波过程中检测和隔离具有很大ASE噪声的符号,以提高CPE算法的稳定性和性能。结果表明,与传统的CPE方法相比,所提出的自适应滤波CPE技术与CPE中的归一化处理相结合,在减轻相干调相光信号的激光线宽和光纤非线性的综合影响方面,提供了约1.0 dB的Q因子性能改善。该技术会自动从滤波过程中识别并消除噪声很大的符号,以提高载波相位估计器的稳定性和估计精度。实现该方案所需的附加硬件的复杂性非常简单。

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