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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Error probability of DPSK signals with cross-phase modulation induced nonlinear phase noise
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Error probability of DPSK signals with cross-phase modulation induced nonlinear phase noise

机译:具有交叉相位调制引起的非线性相位噪声的DPSK信号的错误概率

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The error probability is derived analytically for differential phase-shift keying (DPSK) signals contaminated by both self- and cross-phase modulation (SPM and XPM)-induced nonlinear phase noise. XPM-induced nonlinear phase noise is modeled as Gaussian distributed phase noise. When fiber dispersion is compensated perfectly in each fiber span, XPM-induced nonlinear phase is summed coherently span after span and is the dominant nonlinear phase noise for typical wavelength-division-multiplexed (WDM) DPSK systems. For systems without or with XPM-suppressed dispersion compensation, SPM-induced nonlinear phase noise is usually the dominant nonlinear phase noise. With longer walkoff length, for the same mean nonlinear phase shift, 10-Gb/s systems are more sensitive to XPM-induced nonlinear phase noise than 40-Gb/s systems.
机译:对于由自相位调制和交叉相位调制(SPM和XPM)引起的非线性相位噪声污染的差分相移键控(DPSK)信号,可以通过分析得出误差概率。 XPM引起的非线性相位噪声被建模为高斯分布相位噪声。当在每个光纤跨段中对光纤色散进行完美补偿时,XPM引起的非线性相位将在跨接后相干地相加,这是典型的波分复用(WDM)DPSK系统的主要非线性相位噪声。对于没有或具有XPM抑制色散补偿的系统,SPM引起的非线性相位噪声通常是主要的非线性相位噪声。对于相同的平均非线性相移,具有更长的步距长度,与40 Gb / s系统相比,10 Gb / s系统对XPM引起的非线性相位噪声更敏感。

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