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首页> 外文期刊>IEEE Photonics Technology Letters >Dispersion Management of Electrically Precompensated RZ Single-Sideband Signals at 10 Gb/s Without Inline Dispersion Compensation
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Dispersion Management of Electrically Precompensated RZ Single-Sideband Signals at 10 Gb/s Without Inline Dispersion Compensation

机译:电预补偿的RZ单边带信号在10 Gb / s时的色散管理,无需在线色散补偿

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摘要

An alternative approach is presented to minimize the impact of fiber nonlinearities in optical single-sideband systems at 10 Gb/s using electrical dispersion precompensation by adding optical postcompensation while maintaining low accumulated dispersion. Numerical simulation is used to show that the dependence of the system performance on the dispersion compensation scheme resembles a pseudolinear transmission regime, although it is not considered as such in the strictest sense. A launched power increase of 3 dB is achieved when compared to full electrically precompensated systems. A feasible implementation of the optical transmitter is considered, which imposes a maximum transmitted modulation depth. It is shown that low modulation depths result in an asymmetric optimum dispersion compensation map.
机译:通过添加光学后补偿,同时保持低累积色散,提出了一种替代方法,可通过使用电色散预补偿来最大程度地减小10 Gb / s的光学单边带系统中光纤非线性的影响。数值模拟用来表明系统性能对色散补偿方案的依赖性类似于伪线性传输机制,尽管从严格意义上讲并不是这样。与全电预补偿系统相比,发射功率可提高3 dB。考虑了光发射机的可行实施方式,其强加了最大的传输调制深度。结果表明,低调制深度会导致不对称的最佳色散补偿图。

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