Prilepsky Jaroslaw E, Derevyanko Stanislav A, Blow Keith J, Gabitov Ildar, Turitsyn Sergei K
Aston Institute of Photonic Technologies, Aston University, B4 7ET Birmingham, United Kingdom.
Department of Physics of Complex Systems, Weizmann Institute of Science, Rehovot 76100, Israel.
Phys Rev Lett. 2014 Jul 4;113(1):013901. doi: 10.1103/PhysRevLett.113.013901. Epub 2014 Jul 1.
We scrutinize the concept of integrable nonlinear communication channels, resurrecting and extending the idea of eigenvalue communications in a novel context of nonsoliton coherent optical communications. Using the integrable nonlinear Schrödinger equation as a channel model, we introduce a new approach-the nonlinear inverse synthesis method-for digital signal processing based on encoding the information directly onto the nonlinear signal spectrum. The latter evolves trivially and linearly along the transmission line, thus, providing an effective eigenvalue division multiplexing with no nonlinear channel cross talk. The general approach is illustrated with a coherent optical orthogonal frequency division multiplexing transmission format. We show how the strategy based upon the inverse scattering transform method can be geared for the creation of new efficient coding and modulation standards for the nonlinear channel.
我们仔细研究了可积非线性通信信道的概念,在非孤子相干光通信的新背景下复兴并扩展了特征值通信的理念。以可积非线性薛定谔方程作为信道模型,我们引入了一种新方法——非线性逆合成方法——用于数字信号处理,该方法是将信息直接编码到非线性信号频谱上。后者沿传输线平凡且线性地演化,从而提供了一种有效的特征值分割复用,且不存在非线性信道串扰。通过相干光正交频分复用传输格式对这一通用方法进行了说明。我们展示了基于逆散射变换方法的策略如何能够用于创建针对非线性信道的新型高效编码和调制标准。