Fehenberger Tobias, Alvarado Alex, Bayvel Polina, Hanik Norbert
Opt Express. 2015 Apr 6;23(7):9183-91. doi: 10.1364/OE.23.009183.
Lower bounds on mutual information (MI) of long-haul optical fiber systems for hard-decision and soft-decision decoding are studied. Ready-to-use expressions to calculate the MI are presented. Extensive numerical simulations are used to quantify how changes in the optical transmitter, receiver, and channel affect the achievable transmission rates of the system. Special emphasis is put to the use of different quadrature amplitude modulation formats, channel spacings, digital back-propagation schemes and probabilistic shaping. The advantages of using MI over the prevailing Q-factor as a figure of merit of coded optical systems are also highlighted.
研究了用于硬判决和软判决解码的长距离光纤系统互信息(MI)的下限。给出了用于计算互信息的现成表达式。使用大量数值模拟来量化光发射机、接收机和信道的变化如何影响系统的可实现传输速率。特别强调了不同正交幅度调制格式、信道间距、数字反向传播方案和概率整形的使用。还突出了使用互信息而非普遍使用的Q因子作为编码光系统品质因数的优势。