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首页> 外文期刊>Journal of Lightwave Technology >64-Gb/s SSB-PAM4 Transmission Over 120-km Dispersion-Uncompensated SSMF With Blind Nonlinear Equalization, Adaptive Noise-Whitening Postfilter and MLSD
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64-Gb/s SSB-PAM4 Transmission Over 120-km Dispersion-Uncompensated SSMF With Blind Nonlinear Equalization, Adaptive Noise-Whitening Postfilter and MLSD

机译:具有盲非线性均衡,自适应降噪后置滤波器和MLSD的120-km色散-无补偿SSMF上的64-Gb / s SSB-PAM4传输

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摘要

A novel low-complexity digital signal processing solution is presented to compensate the impairments of limited bandwidth and nonlinearity. It is based on the equalizer, adaptive noise-whitening postfilter, and maximum likelihood sequence detection (MLSD). The system performance loss is induced by higher noise power at the signal band edges after the equalizer can be mitigated by the postfilter and MLSD. Given the above structure, it is possible to enrich the equalizer by providing nonlinear compensation capability. A memory polynomial equalizer (MPE), instead of Volterra equalizer (VE), is applied as the equalizer to compensate the nonlinearity impairments in order to make a tradeoff between complexity and performance. For the adaption of MPE, the blindly adaptive multistep-size decision-directed least-mean-square algorithm is selected. By using a dual-drive Mach-Zehnder and direct detection, 64-Gb/s single-sideband 4-ary pulse amplitude modulation (SSB-PAM4) transmission over 120km dispersion-uncompensated standard single-mode fiber (SSMF) with 10-dB bandwidth roughly 13.5 GHz is experimentally demonstrated. Given a 20% overhead soft-decision forward-error correction with bit error rate threshold of 2 × 10-2, the dispersionuncompensated SSMF transmission distance can be significantly increased from 40 to 120 km with the proposed receiver side solution. The optical signal noise ratio performances for different fiber reach and receiver structure are investigated. Furthermore, we compare the computational complexity of MPE with VE and conclude that MPE can substantially reduce computation complexity with negligible performance loss.
机译:提出了一种新颖的低复杂度数字信号处理解决方案,以补偿有限带宽和非线性的损害。它基于均衡器,自适应噪声白化后置滤波器和最大似然序列检测(MLSD)。在通过后置滤波器和MLSD减轻均衡器之后,信号频带边缘的噪声功率较高会导致系统性能损失。在上述结构的情况下,可以通过提供非线性补偿能力来丰富均衡器。代替Volterra均衡器(VE),使用存储器多项式均衡器(MPE)作为均衡器来补偿非线性损伤,以便在复杂性和性能之间进行权衡。为了适应MPE,选择了盲自适应多步大小决策定向最小均方算法。通过使用双驱动Mach-Zehnder和直接检测,可以在120 km的色散无补偿标准单模光纤(SSMF)上以10 dB的速率传输64 Gb / s单边带4进制脉冲幅度调制(SSB-PAM4)传输实验证明了大约13.5 GHz的带宽。给定20%开销的软判决前向纠错,且误码率阈值为2×10 -2 ,建议的接收器侧可以将色散未补偿的SSMF传输距离从40 km显着增加到120 km解。研究了不同光纤到达范围和接收器结构的光信号噪声比性能。此外,我们将VE与MPE的计算复杂度进行了比较,得出的结论是MPE可以显着降低计算复杂度,而性能损失却可以忽略不计。

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