论文标题

非线性纤维通道的高心态几何星座形状

High-Cardinality Geometrical Constellation Shaping for the Nonlinear Fibre Channel

论文作者

Sillekens, Eric, Liga, Gabriele, Lavery, Domaniç, Bayvel, Polina, Killey, Robert I.

论文摘要

本文提出了设计方法,用于高效优化几何形状的星座,以最大程度地提高光学通信中的数据吞吐量。它描述了分析计算信息理论损失的方法和该损失的梯度,这是输入星形形状的函数。 \ ac {mi}和\ ac {gmi}的梯度对于优化几何形状的星座至关重要。它介绍了有关输入星座的可实现信息率指标的分析导数。所提出的方法允许改进较高基数和高维星座的设计,以优化线性和非线性光纤传输吞吐量。呈现2和4个维度的近容量达到8192点,并在0.06位/2DDSYMBOL内添加了添加性白色高斯噪声通道(AWGN)容量,并具有一般的共同信息(GMI)。此外,引入了一种设计算法,将设计计算时间从几天减少到几分钟,从而为线性AWGN和非线性光纤通道提供了优化的星座,以广泛的信噪比范围。

This paper presents design methods for highly efficient optimisation of geometrically shaped constellations to maximise data throughput in optical communications. It describes methods to analytically calculate the information-theoretical loss and the gradient of this loss as a function of the input constellation shape. The gradients of the \ac{MI} and \ac{GMI} are critical to the optimisation of geometrically-shaped constellations. It presents the analytical derivative of the achievable information rate metrics with respect to the input constellation. The proposed method allows for improved design of higher cardinality and higher-dimensional constellations for optimising both linear and nonlinear fibre transmission throughput. Near-capacity achieving constellations with up to 8192 points for both 2 and 4 dimensions, with generalised mutual information (GMI) within 0.06 bit/2Dsymbol of additive white Gaussian noise channel (AWGN) capacity, are presented. Additionally, a design algorithm reducing the design computation time from days to minutes is introduced, allowing the presentation of optimised constellations for both linear AWGN and nonlinear fibre channels for a wide range of signal-to-noise ratios.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源