多层感知器作为SI-POF中多电平脉冲调幅方案的均衡器

I. Osahon, S. Rajbhandari, W. Popoola
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引用次数: 5

摘要

为了提高步进折射率塑料光纤(SI-POF)的性能,近年来研究了带均衡器的多电平脉冲幅度调制(M-PAM)等频谱高效调制方案。在最近的文献中,用于POF的自适应均衡器是传统的线性横向均衡器(LTE)和决策反馈均衡器(DFE)。在本文中,我们研究了多层感知器(MLP)的性能,它是一种前馈神经网络结构,作为自适应均衡器,使用M-PAM方案最小化SI-POF中的符号间干扰(ISI)。在高斯分布的理论POF信道中,比较了MLP均衡器与传统均衡器(LTE和DFE)的误码率(BER)性能。与LTE和DFE相比,我们在本文中表明,在严重的ISI下,MLP获得了更好的BER性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-layer perceptron as equalisers for multilevel pulse amplitude modulation scheme in SI-POF
To improve performance in step-index plastic optical fiber (SI-POF), spectral efficient modulation Scheme like multilevel pulse amplitude modulation (M-PAM) with equalisers have recently been studied. The adaptive equalisers used for POF in recent literature are the conventional linear transversal equalisers (LTE) and decision feedback equaliser (DFE). In this paper, we investigate the performance of multi-layer perceptron (MLP), which is a feed-forward neural network architecture, as an adaptive equaliser for minimizing intersymbol interference (ISI) in SI-POF using M-PAM schemes. The bit-error rate (BER) performance for the MLP equaliser is compared with that of conventional equaliser (LTE and DFE) for theoretical POF channels with Gaussian Profile. In comparison to LTE and DFE, we show in this paper that under severe ISI, MLP achieves better BER performance.
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