Probabilistic amplitude shaping (PAS) is a practical means to achieve a shaping gain in optical fiber communication. However, PAS and shaping in general also affect the signal-dependent generation of nonlinear interference. This provides an opportunity for nonlinearity mitigation through PAS, which is also referred to as a nonlinear shaping gain. In this paper, we introduce a linear lowpass filter model that relates transmitted symbol-energy sequences and nonlinear distortion experienced in an optical fiber channel. Based on this model, we conduct a nonlinearity analysis of PAS with respect to shaping blocklength and mapping strategy. Our model explains results and relationships found in literature and can be used as a design tool for PAS with improved nonlinearity tolerance. We use the model to introduce a new metric for PAS with sequence selection. We perform simulations of selection-based PAS with various amplitude shapers and mapping strategies to demonstrate the effectiveness of the new metric in different optical fiber system scenarios.
翻译:光纤通信的成型(PAS)是实现光纤通信成型增益的一个实用手段,但是,PAS和一般成型也影响到非线性干扰的信号依赖型代代代代代代代代代代代代代代代代代代谢,这为通过PAS减少非线性干扰提供了一个机会,这也被称为非线性成代代代代代代谢增益。在本文中,我们引入了线性低端过滤模型,该模型涉及光纤频道所经历的传输符号-能源序列和非线性扭曲。基于这一模型,我们对PAS进行非线性分析,以形成轮廓和绘图战略。我们的模型解释了在文献中发现的结果和关系,可以用作考绩制度的设计工具,改进非线性容忍度。我们使用该模型为基于序列选择的考绩制度引入新的指标。我们用各种振标制成和绘图战略进行基于选择的PAS模拟,以显示不同光纤系统情景下的新指标的有效性。