首页> 外文期刊>Journal of Modern Optics >Efficient compensation of chromatic dispersion and nonlinearities using logarithmic digital backward propagation in N-channel DWDM 1.12Tbit/s DP-QPSK transmission
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Efficient compensation of chromatic dispersion and nonlinearities using logarithmic digital backward propagation in N-channel DWDM 1.12Tbit/s DP-QPSK transmission

机译:在N通道DWDM 1.12Tbit / s DP-QPSK传输中使用对数数字后向传播有效补偿色散和非线性

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摘要

We propose and numerically investigate the logarithmic step-size distribution for implementing an efficient digital backward propagation (DBP) algorithm using the split-step Fourier method (SSFM). DBP is implemented in N-channel dual-polarization quadrature-phase-shift-keying (DP-QPSK) transmission over 2000 km standard single-mode fiber (SMF) with no in-line optical dispersion compensation. This algorithm is compared with the constant step-size modified DBP (M-SSFM) algorithm in terms of efficiency, complexity and computational time. Furthermore, we investigate the same-capacity and same-bandwidth transmission systems with 14 Gbaud (GBd), 28GBd and 56GBd per-channel rates. The logarithmic step-size based DBP algorithm depicts efficient mitigation of chromatic dispersion (CD) and nonlinear (NL) impairment. The benefit of the logarithmic step-size is the reduced complexity and computational time for higher baud rates.
机译:我们提出并数值研究对数步长分布,以实现采用分步傅里叶方法(SSFM)的有效数字后向传播(DBP)算法。 DBP在N通道双偏振正交相移键控(DP-QPSK)传输中实现,传输速率超过2000 km标准单模光纤(SMF),而无需进行在线光学色散补偿。在效率,复杂性和计算时间方面,将该算法与恒定步长修改DBP(M-SSFM)算法进行了比较。此外,我们研究了每通道速率分别为14 Gbaud(GBd),28GBd和56GBd的相同容量和相同带宽的传输系统。基于对数步长的DBP算法描述了色散(CD)和非线性(NL)损伤的有效缓解。对数步长的好处是降低了复杂性并提高了波特率,缩短了计算时间。

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