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基于扩散光纤环的多用户白光 OFDMA-VLC 系统中的光辅助 AMC。

AL-aided AMC in a multi-user white-light OFDMA VLC system over a light-diffusing fiber loop.

出版信息

Opt Lett. 2023 Jul 15;48(14):3661-3664. doi: 10.1364/OL.490143.

Abstract

To develop an adaptive modulation scheme for flexible high-speed multi-user visible light communication (VLC), automatic modulation classification (AMC) is adopted for monitoring the modulation formats of different subcarrier groups. An AMC scheme based on a joint convolutional neural network (CNN), active learning (AL), and data augmentation (DA) is demonstrated over an orthogonal frequency division multiplexing access (OFDMA) VLC system. The configuration of the diffuse white-light VLC system is combined with a pair integrated transceiver module, a light-diffusing fiber (LDF), and a wireless channel, which can provide white-light illumination and ubiquitous access. Within the forward error correction (FEC) threshold, the data rates of the white-light VLC links can reach 325.5 Mbps with a bit error rate (BER) of 2.163 × 10. An experiment with two-user access via the proposed VLC link with an unequal bandwidth allocation was demonstrated. The performance of the AL-aided CNN AMC scheme also shows a classification accuracy rate of 95.48% for the constellation diagrams of different subcarriers of the OFDMA signal over 240 training samples and faster convergence than a CNN-based AMC.

摘要

为了开发用于灵活高速多用户可见光通信(VLC)的自适应调制方案,采用自动调制分类(AMC)来监测不同子载波组的调制格式。在正交频分复用接入(OFDMA)VLC 系统上,展示了一种基于联合卷积神经网络(CNN)、主动学习(AL)和数据增强(DA)的 AMC 方案。扩散白光 VLC 系统的配置与一对集成收发模块、光散射光纤(LDF)和无线信道相结合,可提供白光照明和无处不在的接入。在前向纠错(FEC)门限内,白光 VLC 链路的数据速率可达 325.5Mbps,误码率(BER)为 2.163×10。通过所提出的 VLC 链路演示了具有不等带宽分配的两个用户接入,AL 辅助 CNN AMC 方案的性能还显示了 OFDMA 信号不同子载波星座图的分类准确率为 95.48%,并且比基于 CNN 的 AMC 具有更快的收敛速度。

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