The optical fiber multiple-input multiple-output (MIMO) channel with intensity modulation and direct detection (IM/DD) per spatial path is treated. The spatial dimensions represent the multiple modes employed for transmission and the cross-talk between them originates in the multiplexers and demultiplexers, which are polarization dependent and thus timevarying. The upper bounds from free-space IM/DD MIMO channels are adapted to the fiber case, and the constellation constrained capacity is constructively estimated using the Blahut-Arimoto algorithm. An autoencoder is then proposed to optimize a practical MIMO transmission in terms of pre-coder and detector assuming channel distribution knowledge at the transmitter. The pre-coders are shown to be robust to changes in the channel.
翻译:处理每个空间路径具有强度调制和直接探测(IM/DD)的光纤多投入多输出(MIMO)通道,空间维度代表传输所使用的多种模式,它们之间的交叉交谈源于多轴和多重双倍体,它们依赖两极分化,因此有时间变化。自由空间IM/DDMIMO频道的上界线适应纤维案例,星座受限能力通过Blahut-Arimoto算法进行建设性估计。然后建议自动编码器在编码前和探测器假设发射器的频道分布知识时,优化IMO的实用传输。