干扰(通信)
导向信号机
光学
正交调幅
计算机科学
多路复用
放大器
非线性系统
调幅
调制(音乐)
物理
传输(电信)
振幅
键控
电子工程
放大自发辐射
传动系统
相移键控
噪音(视频)
光通信
幅相键控
信噪比(成像)
误码率
信号处理
调幅键控
频率调制
功率(物理)
正交频分复用
光功率
偏振模色散
干涉测量
相位噪声
作者
Hao Zhou,Wen Zuo,Du Tang,Fan Yang,Yingjie Jiang,Yutao Zhou,Fei Xie,Baoxuan Quan,Huan Chen,Yan Zhao,Hengying Xu,Chenglin Bai,Yaojun Qiao
出处
期刊:Optics Letters
[Optica Publishing Group]
日期:2026-01-02
卷期号:51 (3): 724-724
摘要
A nonlinear interference (NLI) monitoring method is proposed for coherent transmission systems by jointly using implementation agreement-defined pilot symbols (PS) and amplitude modulation pilot tone (AMPT). The PS is employed to extract the total noise from the received signal, while the AMPT enables separation of self-channel interference (SCI) and cross-channel interference (XCI) power from amplifier spontaneous emission (ASE) power. In a 60-GBaud dual-polarization quadrature phase-shift keying (DP-QPSK) 1500-km wavelength-division multiplexing (WDM) simulation system, the NLI signal-to-noise ratio (SNR) and NLI-induced optical SNR (OSNR) penalty were estimated with errors less than 0.26/0.07 dB for a single-channel (SCI-only) system and 0.52/0.30 dB for a 5-channel (SCI+XCI) system within a ∼160-µs time window. In a single-channel 60-GBaud DP-QPSK 500-km experimental system, the estimation errors of NLI SNR and OSNR penalty were below 0.45 dB and 0.35 dB, respectively, using ∼ 300-µs data. The proposed PS-AMPT NLI monitoring method exhibits high accuracy and strong compatibility with deployed optical networks.
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