论文标题

多通道光学通信中联合通道载波估计的试点分布

Pilot Distributions for Joint-Channel Carrier-Phase Estimation in Multichannel Optical Communications

论文作者

Alfredsson, Arni F., Agrell, Erik, Karlsson, Magnus, Wymeersch, Henk

论文摘要

联合通道载波估计可以提高多通道光学通信系统的性能。在试点辅助估计的情况下,飞行员分布在通过多个通道传输的二维通道符号块上。但是,次优的试点分布降低了载体相估计的有效性,从而导致不必要的飞行员开销,从而降低了系统的整体信息率。结果表明,将飞行员放置在所有通道中通常是次优的。相反,通过优化试点分布,在某些情况下,相位噪声估计值的平均平方误差可以减少90%以上。此外,可以证明,双极化的20 GBD传输分别为20个四维通道,可以提高到20 GBD的64-ARY,256-元和1024- arry正交幅度模式,可将可实现的信息速率提高到每个复数符号的0.05、0.16和0.41位。

Joint-channel carrier-phase estimation can improve the performance of multichannel optical communication systems. In the case of pilot-aided estimation, the pilots are distributed over a two-dimensional channel--time symbol block that is transmitted through multiple channels. However, suboptimal pilot distributions reduce the effectiveness of the carrier-phase estimation and thus result in unnecessary pilot overhead, which reduces the overall information rate of the system. It is shown that placing pilots identically in all channels is suboptimal in general. By instead optimizing the pilot distribution, the mean squared error of the phase-noise estimates can be decreased by over 90% in some cases. Moreover, it is shown that the achievable information rate can be increased by up to 0.05, 0.16, and 0.41 bits per complex symbol for dual-polarization 20 GBd transmission of 64-ary, 256-ary, and 1024-ary quadrature amplitude modulation over 20 four-dimensional channels, respectively, assuming a total laser linewidth of 200 kHz.

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