加性高斯白噪声
正交调幅
误码率
前向纠错
计算机科学
相位噪声
算法
电子工程
激光线宽
背景(考古学)
卡姆
调制(音乐)
传输(电信)
相移键控
电信
频道(广播)
光学
解码方法
物理
激光器
工程类
声学
古生物学
生物
作者
Hubert Dzieciol,Gabriele Liga,Eric Sillekens,Polina Bayvel,Domaniç Lavery
标识
DOI:10.1109/jlt.2020.3031017
摘要
In this paper, we propose a geometric shaping (GS) strategy to design 8, 16, 32 and 64-ary modulation formats for the optical fibre channel impaired by both additive white Gaussian (AWGN) and phase noise. The constellations were optimised to maximise generalised mutual information (GMI) using a mismatched channel model. The presented formats demonstrate an enhanced signal-to-noise ratio (SNR) tolerance in high phase noise regimes when compared with their quadrature amplitude modulation (QAM) or AWGN-optimised counterparts. By putting the optimisation results in the context of the 400ZR implementation agreement, we show that GS alone can either relax the laser linewidth (LW) or carrier phase estimation (CPE) requirements of 400 Gbit/s transmission links and beyond. Following the GMI validation, the performance of the presented formats was examined in terms of post forward error correction (FEC) bit-error-rate (BER) for a soft decision (SD) extended Hamming code (128, 120), implemented as per the 400ZR implementation agreement. We demonstrate gains of up to 1.2 dB when compared to the 64-ary AWGN shaped formats.
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