论文标题
Huffman编码的球体成型,以扩展单跨链接
Huffman-Coded Sphere Shaping for Extended-Reach Single-Span Links
论文作者
论文摘要
Huffman编码的球体成形(HCSS)是有限长度概率星座塑形的算法,在低实施复杂性下,它提供了几乎最佳的能源效率。在本文中,我们通过实验研究了采用双偏振64-ARY正交振幅调制(DP-64QAM)的HCSS的非线性性能,该链接在扩展的单跨链路中,其中包含标准单模式光纤(SSMF)的200 km。我们研究了塑形序列长度,符号映射的维度和塑形速率的影响。我们确定Maxwell -Boltzmann分布匹配的幼稚方法(在添加剂白色高斯噪声通道中是最佳的)提供了无限长度方案中最大可实现的信息率增长为0.18位/4D -Symbol。相反,HCSS可以使用32的振幅序列长度实现0.37位/4DSYMBOL的增益,仅使用整数比较和加法操作就可以无需乘法就可以实现。还分析了编码的系统性能,净数据速率约为形状和均匀输入的425 GB/s。
Huffman-coded sphere shaping (HCSS) is an algorithm for finite-length probabilistic constellation shaping, which provides nearly optimal energy efficiency at low implementation complexity. In this paper, we experimentally study the nonlinear performance of HCSS employing dual-polarization 64-ary quadrature amplitude modulation (DP-64QAM) in an extended reach single-span link comprising 200 km of standard single mode fiber (SSMF). We investigate the effects of shaping sequence length, dimensionality of symbol mapping, and shaping rate. We determine that the naïve approach of Maxwell-Boltzmann distribution matching - which is optimal in the additive white Gaussian noise channel - provides a maximum achievable information rate gain of 0.18 bits/4D-symbol in the infinite length regime. Conversely, HCSS can achieve a gain of 0.37 bits/4Dsymbol using amplitude sequence lengths of 32, which may be implemented without multiplications, using integer comparison and addition operations only. Coded system performance, with a net data rate of approximately 425 Gb/s for both shaped and uniform inputs, is also analyzed.