论文标题
连贯的光传输系统中的几何形状多维调制格式
Geometrically-Shaped Multi-Dimensional Modulation Formats in Coherent Optical Transmission Systems
论文作者
论文摘要
多维(MD)空间中的调制格式是一种有效的方法,可在添加剂白色高斯噪声(AWGN)通道和光纤通道中收获光谱效率的提高。在本文的第一部分中,审查了现有的用于光纤通信的MD几何形状的调制。结果表明,可以通过在维度或/和增加调制格式的基数中利用相关性来获得较大的收益。还讨论了实际的局限性和挑战与有效的解决方案。在第二部分中,我们根据对AWGN通道的广义相互信息的最大化,将最近提出的四维(4D)调制格式家族扩展到高光谱效率的限制至最高10位/4D-SYM。据报道,多跨度光纤传输系统的达到高达25%。最后,在最近引入的非线性干扰(NLI)模型的帮助下,为单跨度光纤系统引入了用于设计非线性4D调制格式的优化。仿真结果表明,相对于AWGN通道最佳4D调制格式,提出的基于NLI模型的4D调制格式可以将有效SNRs增加0.25 dB。
Shaping modulation formats in multi-dimensional (MD) space is an effective approach to harvest spectral efficiency gains in both the additive white Gaussian noise (AWGN) channel and the optical fiber channel. In the first part of this paper, existing MD geometrically-shaped modulations for fiber optical communications are reviewed. It is shown that large gains can be obtained by exploiting correlation in the dimensions or/and by increasing the cardinality of the modulation format. Practical limitations and challenges are also discussed together with efficient solutions. In the second part, we extend the recently proposed four-dimensional (4D) modulation format family based on the constraint of orthant-symmetry to high spectrum efficiencies up to 10 bit/4D-sym by maximizing generalized mutual information for AWGN channel. Reach increases of up to 25% for a multi-span optical fiber transmission system are reported. Lastly,with the help of a recently introduced nonlinear interference (NLI) model, an optimization for designing nonlinear-tolerant 4D modulation formats is introduced for a single-span optical fiber system. Simulation results show that the proposed NLI model-based 4D modulation format could increase the effective SNRs by 0.25 dB with respect to the AWGN channel-optimal 4D modulation format.