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首页> 外文期刊>Journal of Russian laser research >A Detailed Analysisof Cross-phase Modulation Effects On ook And Dpsk Optical Wdm Transmission Systems in The Presence Of Gvd, Spm, And Ase Noise
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A Detailed Analysisof Cross-phase Modulation Effects On ook And Dpsk Optical Wdm Transmission Systems in The Presence Of Gvd, Spm, And Ase Noise

机译:在存在Gvd,Spm和Ase噪声的情况下对ook和Dpsk光学Wdm传输系统的交叉相位调制效应的详细分析

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摘要

A performance analysis is carried out to evaluate the effect of cross-phase modulation (XPM) on a dispersion-managed 20 Gb/s optical wavelength-division multiplexing (WDM) transmission system using either the on-off keying (OOK) or the different-phase-shifting keying (DPSK) modulation, in the presence of the group-velocity dispersion (GVD), self-phase modulation (SPM), and amplified spontaneous emission (ASE). It is found that to achieve a bit error rate (BER) of 10~(-9) at a distance of 160 km, a 1.0 dB XPM power penalty is incurred for input channel power of 3 dBm in the OOK transmission and 7 dBm in the DPSK transmission. The power penalty increases with input channel powers and is inversely proportional and exhibits oscillations with respect to the channel separation. The oscillation is evenly spaced for the DPSK but not for the OOK and suggests the presence of optimum separation values. The XPM penalty decreases when a high dispersion fiber is used and increases linearly with increasing dispersion slope. Small residual dispersion can reduce the penalty of nonlinear effects.
机译:进行了性能分析,以评估交叉相位调制(XPM)对使用开关键控(OOK)或其他方法的色散管理的20 Gb / s光波分复用(WDM)传输系统的影响组速度色散(GVD),自相调制(SPM)和放大的自发发射(ASE)的情况下进行相移键控(DPSK)调制。发现在160 km的距离上要达到10〜(-9)的误码率(BER),在OOK传输中3 dBm的输入通道功率会在1.0 dB XPM功率损失,而在100 km时则为7 dBm。 DPSK传输。功率损失随输入通道功率的增加而增加,并且成反比,并且相对于通道间隔表现出振荡。 DPSK的振动间隔均匀,但OOK的振动间隔均匀,这表明存在最佳分离值。当使用高色散光纤时,XPM损失降低,并且随着色散斜率的增加而线性增加。较小的残留色散可以减少非线性效应的损失。

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