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Impact of Equalization-Enhanced Phase Noise on Digital Nonlinearity Compensation in High-Capacity Optical Communication Systems

机译:均衡增强相位噪声对高容量光通信系统数字非线性补偿的影响

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摘要

Equalization-enhanced phase noise (EEPN) can severely degrade the performance of long-haul optical fiber transmission systems. In this paper, the impact of EEPN in Nyquist-spaced dual-polarization quadrature phase shift keying (DP-QPSK), dual-polarization 16-ary quadrature amplitude modulation (DP-16QAM), and DP-64QAM optical transmission systems is investigated considering the use of electrical dispersion compensation (EDC) and multi-channel digital backpropagation (MC-DBP). Our results demonstrate that full-field DBP (FF-DBP) is more susceptible to EEPN compared to single-channel and partial-bandwidth DBP. EEPN-induced distortions become more significant with the increase of the local oscillator (LO) laser linewidth, and this results in degradations in bit-error-rates (BERs), achievable information rates (AIRs), and AIR-distance products in optical communication systems. Transmission systems using higher-order modulation formats can enhance information rates and spectral efficiencies, but will be more seriously degraded by EEPN. It is found that degradations on AIRs, for the investigated FF-DBP schemes, in the DP-QPSK, the DP-16QAM, and the DP-64QAM systems are 0.07 Tbit/s, 0.11 Tbit/s, and 0.57 Tbit/s, respectively, due to the EEPN with an LO laser linewidth of 1 MHz. It is also seen that the selection of a higher-quality LO laser can significantly reduce the bandwidth requirement and the computational complexity in the MC-DBP.
机译:均衡增强的相位噪声(EEPN)可以严重降低长途光纤传输系统的性能。本文研究了EEPN在奈奎斯间隔间隔双极化正交相移键控(DP-QPSK),双极化16-ary正交幅度调制(DP-16QAM)和DP-64QAM光传输系统中的影响使用电气色散补偿(EDC)和多通道数字背部经验(MC-DBP)。我们的结果表明,与单通道和部分带宽DBP相比,全场DBP(FF-DBP)更容易EEPN。随着本地振荡器(LO)激光线宽的增加,EEPN诱导的失真变得更加显着,这导致误码率(BERS),可实现的信息速率(空气)和光学通信中的空中距离产品的降低系统。使用高阶调制格式的传输系统可以提高信息速率和光谱效率,但是通过EEPN更严重降级。发现在DP-QPSK,DP-16QAM和DP-64QAM系统中,用于调查的FF-DBP方案的空中降级为0.07 tbet / s,0.11 tbit / s和0.57 tbit / s,分别是由于eepn具有1 MHz的LO激光线宽。还可以看出,选择更高质量的LO激光器可以显着降低MC-DBP中的带宽要求和计算复杂度。

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