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首页> 外文期刊>Procedia Computer Science >Diversity Schemes in Multi-hop Visible Light Communications for 6G Networks
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Diversity Schemes in Multi-hop Visible Light Communications for 6G Networks

机译:用于6G网络的多跳可见光通信中的多样性方案

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With the fast-emerging trend of deploying Internet-of-things (IoT) in smart homes and cities, next-generation wireless systems (i.e., beyond fifth-generation (5G) of wireless mobile communications) are expected to connect a plurality of devices, including machines, sensors, tablets, cameras, etc. To this end, the radio frequency (RF) spectrum would fail to fulfill the demands of such enormous data-heavy wireless applications, as operating at the RF spectrum would largely suffer from data congestion and interference. Based on the potential of Visible Light Communications (VLC) to solve the problem of spectrum scarcity and satisfy the high data-rate requirements of beyond 5G systems, this paper focuses on utilizing VLC for IoT applications in indoor environments by means of adequately routing data among VLCbased nodes. Operating at the unlicensed optical band in the visible light region utilizes simple Light-Emitting-Diodes (LEDs), which is a health-friendly communication method. VLC has the advantages of providing ultra-high bandwidth, robustness to electromagnetic interference, and inherent physical security. VLC, however, suffers from severe short communication ranges and line-of-sight (LoS) constraints. This paper proposes overcoming such challenges by means of adopting a transmit diversity scheme that transmits messages over several paths. In order to reduce the receiver outage probability, the paper proposes multiple combination schemes at the receiver side, namely selection combining, maximal-ratio combining, and threshold combining. The simulation results assess the effectiveness of the proposed diversity schemes in terms of signal-to-noise-ratio and outage probability and illustrate the suitability of deploying VLC for next-generation indoor networks. The results show that that maximal-ratio combining outperforms selection combining and threshold combining by approximately 10% and 40%, respectively.
机译:随着在智能家庭和城市部署内容(物联网)的快速新兴趋势,预计下一代无线系统(即超出第五代(5G)的无线移动通信)将连接多个设备,包括机器,传感器,平板电脑,摄像机等,到目前为止,射频(RF)谱将无法满足这种巨大的数据沉重的无线应用的需求,因为在RF频谱上的操作大大遭受数据拥塞和干扰。基于可见光通信(VLC)的潜力来解决频谱稀缺问题并满足超超过5G系统的高数据速率要求,本文侧重于利用VLC在室内环境中使用VLC在室内环境中通过充分的路由数据vlcbased节点。在可见光区域中的未经许可的光学带上操作利用简单的发光二极管(LED),这是一种健康友好的通信方法。 VLC具有超高带宽,鲁棒性与电磁干扰以及固有的物理安全性的优点。然而,VLC遭受严重的短期通信范围和视线(LOS)约束。本文通过采用传输分集方案来提出克服这些挑战,该挑战在几个路径上传输消息。为了降低接收器中断概率,本文提出了在接收器侧的多个组合方案,即选择组合,最大比组合和阈值组合。仿真结果评估了所提出的分集方案在信噪比和中断概率方面的有效性,并说明了部署VLC了解下一代室内网络的适用性。结果表明,最大比率相结合优于选择组合和阈值分别组合约10%和40%。

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