波特
非线性系统
人工神经网络
补偿(心理学)
计算机科学
订单(交换)
方案(数学)
摄动(天文学)
控制理论(社会学)
微扰理论(量子力学)
数学
电信
人工智能
物理
数学分析
经济
量子力学
传输(电信)
心理学
精神分析
控制(管理)
财务
作者
Tianchi Chen,Chenglin Bai,Yuting Wu,Zhihang Sun,Wanxiang Bi,Guizhen Wang,Hengying Xu,Lishan Yang,Yuanhao Cui
标识
DOI:10.1109/acp/ipoc63121.2024.10809574
摘要
In order to effectively suppress the performance degradation caused by the cumulative nonlinear impairments due to the higher transmission rate and larger transmission capacity of optical communication systems, we propose a nonlinear compensation scheme assisted by CNN-BiLSTM neural network based on first-order and second-order perturbation theory. It is verified by the polarization multiplexing (PDM) single carrier (SC) and 5-channel wavelength division multiplexing (WDM) simulation systems with 128 GBaud 16 quadrature amplitude modulation signal and transmission distance of 1600 km, the Q-factor of our scheme can be enhanced by 0.48 dB and 0.26 dB, respectively, in SC system when compared with the linear compensation scheme and the digital backpropagation at 40 steps per span (DBP40StPs). Furthermore, in 5-channel WDM systems, our solution resulted in a 0.53 dB and 0.34 dB increase in Q-factor gain, respectively, with a 29% reduction in complexity, when compared with the aforementioned schemes.
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