Coherent dual-polarization (DP) optical transmission systems encode information on the four available degrees of freedom of an optical field: the two polarization states, each with two quadrature components. Such systems naturally operate based on a four-dimensional (4D) signal space. Having a general analytical model to accurately estimate nonlinear interference (NLI) is key to analyze such transmission systems as well as to study how different DP-4D formats are affected by NLI. However, the available models in the literature are not completely general. They either do not apply to the entire DP-4D formats or do not consider all the NLI contributions. In this paper we develop a model that applies to the entire class of DP-4D modulation formats. Our model takes self-channel interference, cross-channel interference and multiple-channel interference effects into account. As an application of our model, we further study the effects of signal-noise interactions in long-haul transmission via the proposed model. When compared to previous results in the literature, our model is more accurate at predicting the contribution of NLI for both low and high dispersion fibers in single- and multi-channel transmission systems. For the NLI, we report an average gap from split step Fourier simulation results below 0.15dB. The simulation results further show that by considering signal-noise interactions, the proposed model in long-haul transmission improves the NLI power accuracy prediction by up to 8.5%.
翻译:光学领域四个自由度的信息编码双极双极双极光传输系统:两个极化状态,每个有两个方形组件。这些系统自然以四维(4D)信号空间为基础运行。拥有一个用于准确估计非线性干扰的一般性分析模型(NLI)是分析这种传输系统以及研究不同DP-4D格式如何受NLI影响的关键。然而,文献中的可用模型并不完全笼统。它们要么不适用于整个DP-4D格式,要么不考虑国家空间倡议的所有贡献。在本文中,我们开发了一个适用于DP-4D调制格式整个类别的模型。我们的模型考虑的是自带干扰、跨通道干扰和多通道干扰效应。作为我们模型的应用,我们进一步研究了通过拟议模型长期传输的信号-噪声互动的影响。与以往的文献结果相比,我们的模型更准确地预测国家空间倡议对低和高离差纤维的贡献。在单层和多通道的变异性模拟中,我们用单层和多气流变电路的模拟结果展示了NLI的模型。我们通过模拟系统进一步预测了NLI的低和高离差的精确度,我们提出了一个平均变压的模拟结果。