相位噪声和偏振状态不敏感相干光接收机

G. De Marchis, S. Betti, F. Curti, E. Iannone, B. Daino
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引用次数: 2

摘要

提出了补偿单模光纤的相位噪声和偏振波动的不同方案。前两种系统,双频相移键控(DFPSK)和琼斯矩阵反转PSK (JMPSK)依靠发射参考载波的原理来补偿接收机的相位噪声效应。DFPSK通过极化分集检测实现偏振无关性,JMPSK通过电子前馈技术实现偏振无关性。第二对系统是基于偏振调制和斯托克斯参数检测的对端斯托克斯参数移位键控(ASPSK)和差分斯托克斯参数移位键控(DSPSK)。由于Stokes参数与两个偏振分量共有的相位项无关,因此系统对相位噪声具有广泛的容忍度。ASPSK采用前馈电子控制电路实现极化波动不敏感,而DSPSK采用的判定准则允许瞬时极化波动补偿。第一类系统适用于长途应用,第二类系统适用于局域网和城域网。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase-noise and polarization state insensitive coherent optical receivers
Different schemes that make it possible to compensate both phase-noise and polarization fluctuations due to single mode fibers are presented. The first two systems, double-frequency phase shift keying (DFPSK) and Jones matrix inversion PSK (JMPSK) rely on the principle of transmitting a reference carrier to compensate for the phase noise effect at the receiver. The polarization independence is attained in DFPSK by polarization diversity detection and in JMPSK by the electronic feedforward technique. The second pair of systems, antipodal Stokes parameters shift keying (ASPSK) and differential Stokes parameters shift keying (DSPSK), is based on polarization modulation and Stokes parameter detection. Because the Stokes parameters are independent of the phase terms common to both polarization components, the systems are widely tolerant with respect to the phase noise. The polarization fluctuation insensitivity is realized in ASPSK by means of a feedforward electronic control circuit, while in DSPSK the adopted decision criterion allows instantaneous polarization fluctuation compensation. The first class of systems is suitable for long-haul applications, the second class for local and metropolitan area networks.<>
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