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使用新型二维比特分配实现3.24Gb/s的水下可见光通信。

Underwater visible light communication at 3.24 Gb/s using novel two-dimensional bit allocation.

作者信息

Zou Peng, Zhao Yiheng, Hu Fangchen, Chi Nan

出版信息

Opt Express. 2020 Apr 13;28(8):11319-11338. doi: 10.1364/OE.390718.

Abstract

Underwater visible light communication (UVLC) systems suffer from a strong nonlinear effect and high inter-symbol interference (ISI). In this study, to improve the performance of a UVLC system under such conditions, we propose a novel nonlinear hybrid modulation scheme named two-dimensional bit allocation (2DBA). By comparing the performance of 2DBA with the famous Levin-Campello (LC) algorithm and the quadrature amplitude modulation (QAM)-based time-domain hybrid modulation (TDHQ) algorithm, we have proved by analysis and experiment that 2DBA can outperform the power allocation-based LC algorithm and the TDHQ algorithm below the 3.8×10 hard decision forward error correction threshold (HD-FEC) when the system has a severe nonlinear effect and ISI. The data rate 3.24 Gb/s of 2DBA is measured after 1.2 m underwater transmission; as far as we know, this is the highest data rate reported in a blue LED chip based UVLC system.

摘要

水下可见光通信(UVLC)系统存在强烈的非线性效应和较高的码间干扰(ISI)。在本研究中,为了在这种条件下提高UVLC系统的性能,我们提出了一种名为二维比特分配(2DBA)的新型非线性混合调制方案。通过将2DBA的性能与著名的莱文 - 坎佩洛(LC)算法和基于正交幅度调制(QAM)的时域混合调制(TDHQ)算法进行比较,我们通过分析和实验证明,当系统存在严重的非线性效应和ISI时,在3.8×10硬判决前向纠错阈值(HD-FEC)以下,2DBA的性能优于基于功率分配的LC算法和TDHQ算法。在水下1.2米传输后测得2DBA的数据速率为3.24 Gb/s;据我们所知,这是基于蓝色LED芯片的UVLC系统中报道的最高数据速率。

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