Regular perturbation is applied to the Manakov equation and motivates a generalized correlated phase-and-additive noise model for wavelength-division multiplexing over dual-polarization optical fiber channels. The model includes three hidden Gauss-Markov processes: phase noise, polarization rotation, and additive noise. Particle filtering is used to compute lower bounds on the capacity of multi-carrier communication with frequency-dependent powers and delays. A gain of 0.17 bits/s/Hz/pol in spectral efficiency or 0.8 dB in power efficiency is achieved with respect to existing models at their peak data rate. Frequency-dependent delays also increase the spectral efficiency of single-polarization channels.
翻译:经常扰动适用于Manakov方程式,并激励对双极光纤信道的波长分布多路传输采用普遍相关相联的相向和补充噪声模型,该模型包括三个隐藏的Gauss-Markov过程:阶段噪音、两极分化旋转和添加噪声;用粒子过滤来计算依赖频率的力量和延迟的多载体通信能力的下限;在光谱效率方面实现0.17比特/秒/秒/赫兹/波尔的增益;在现有模型的高峰数据速率方面实现0.8dB的功率增益;依赖频率的延迟也提高了单极信道的光谱效率。