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Basis expansion model for tracking and equalizing rapidly varying multimode fiber channels

机译:用于跟踪和均衡快速变化的多模光纤通道的基扩展模型

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摘要

In multi-mode fibers, environmental perturbations induce changes in the channel transfer matrix at rates proportional to the total length of affected segments and the number of modes; potentially reaching levels where adaptive equalizers fail in tracking the channel state. We propose a technique that tracks the channel on a frameby-frame basis by modeling variations in mode coupling coefficients over the period of a full frame of symbols as a linear combination of discrete prolate spheroidal sequences (DPSS). In simulations of rapidly varying channel scenarios where least-mean square (LMS) and recursive least squares (RLS) fail completely, our proposed approach consistently tracks and equalizes the channel variation; yielding a symbol error rate of 10-4 at 15-dB signal-to-noise ratio. DPSS, being matched to the dynamic channel behaviour, is a key factor in minimizing the pilot resources expended in channel estimation, with losses in spectral efficiency starting from 4 up to 20 in the worst case.
机译:在多模光纤中,环境扰动会引起信道传输矩阵的变化,其速率与受影响线段的总长度和模态数量成正比;可能会达到自适应均衡器无法跟踪通道状态的水平。我们提出了一种技术,该技术通过将全帧符号周期内的模式耦合系数变化建模为离散prolate球状序列(DPSS)的线性组合,逐帧跟踪通道。在最小均方 (LMS) 和递归最小二乘 (RLS) 完全失效的快速变化信道场景的仿真中,我们提出的方法始终如一地跟踪和均衡信道变化;在 15dB 信噪比下产生 10-4 的符号错误率。DPSS与动态信道行为相匹配,是最小化信道估计中消耗的导频资源的关键因素,在最坏的情况下,频谱效率损失从4%到20%不等。

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