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Analysis of chromatic dispersion compensation and carrier phase recovery in long-haul optical transmission system influenced by equalization enhanced phase noise

机译:均衡增强相位噪声对长距离光传输系统色散补偿和载波相位恢复的影响分析

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摘要

The performance of long-haul coherent optical fiber transmission system is significantly affected by the equalization enhanced phase noise (EEPN), due to the interaction between the electronic dispersion compensation (EDC) and the laser phase noise. In this paper, we present a comprehensive study on different chromatic dispersion (CD) compensation and carrier phase recovery (CPR) approaches, in the n-level phase shift keying (n-PSK) and the n-level quadrature amplitude modulation (n-QAM) coherent optical transmission systems, considering the impacts of EEPN. Four CD compensation methods are considered: the time-domain equalization (TDE), the frequency-domain equalization (FDE), the least mean square (LMS) adaptive equalization are applied for EDC, and the dispersion compensating fiber (DCF) is employed for optical dispersion compensation (ODC). Meanwhile, three carrier phase recovery methods are also involved: a one-tap normalized least mean square (NLMS) algorithm, a block-wise average (BWA) algorithm, and a Viterbi-Viterbi (VV) algorithm. Numerical simulations have been carried out in a 28-Gbaud dual-polarization quadrature phase shift keying (DP-QPSK) coherent transmission system, and the results indicate that the origin of EEPN depends on the choice of chromatic dispersion compensation methods, and the effects of EEPN also behave moderately different in accordance to different carrier phase recovery scenarios.
机译:远程相干光纤传输系统的性能受电子色散补偿(EDC)和激光相位噪声之间的相互作用的影响,受均衡增强相位噪声(EEPN)的影响很大。在本文中,我们对n级相移键控(n-PSK)和n级正交幅度调制(n- QAM)相干光传输系统,考虑EEPN的影响。考虑四种CD补偿方法:EDC采用时域均衡(TDE),频域均衡(FDE),最小均方(LMS)自适应均衡,色散补偿光纤(DCF)用于光学色散补偿(ODC)。同时,还涉及三种载波相位恢复方法:一键式归一化最小均方(NLMS)算法,逐块平均值(BWA)算法和Viterbi-Viterbi(VV)算法。在28 Gbaud双极化正交相移键控(DP-QPSK)相干传输系统中进行了数值模拟,结果表明EEPN的起源取决于色散补偿方法的选择以及根据不同的载波相位恢复方案,EEPN的行为也略有不同。

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