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中继辅助可见光通信中的移动用户连接性

Mobile User Connectivity in Relay-Assisted Visible Light Communications.

作者信息

Pešek Petr, Zvanovec Stanislav, Chvojka Petr, Bhatnagar Manav R, Ghassemlooy Zabih, Saxena Prakriti

机构信息

Department of Electromagnetic Field, Faculty of Electrical Engineering, Czech Technical University in Prague, 2 Technicka, 16627 Prague, Czech Republic.

Department of Electrical Engineering, Indian Institute of Technology Delhi, Hauz Khas, IN-110016 New Delhi, India.

出版信息

Sensors (Basel). 2018 Apr 7;18(4):1125. doi: 10.3390/s18041125.

Abstract

In this paper, we investigate relay-assisted visible light communications (VLC) where a mobile user acts as a relay and forwards data from a transmitter to the end mobile user. We analyse the utilization of the amplify-and-forward (AF) and decode-and-forward (DF) relaying schemes. The focus of the paper is on analysis of the behavior of the mobile user acting as a relay while considering a realistic locations of the receivers and transmitters on a standard mobile phone, more specifically with two photodetectors on both sides of a mobile phone and a transmitting LED array located upright. We also investigate dependency of the bit error rate (BER) performance on the azimuth and elevation angles of the mobile relay device within a typical office environment. We provide a new analytical description of BER for AF and DF-based relays in VLC. In addition we compare AF and DF-based systems and show that DF offers a marginal improvement in the coverage area with a BER < 10 and a data rate of 100 Mb/s. Numerical results also illustrate that relay-based systems offer a significant improvement in terms of the coverage compared to direct non-line of sight VLC links.

摘要

在本文中,我们研究了中继辅助可见光通信(VLC),其中移动用户充当中继,将数据从发射机转发到最终移动用户。我们分析了放大转发(AF)和解码转发(DF)中继方案的利用率。本文的重点是分析充当中继的移动用户的行为,同时考虑标准手机上接收器和发射器的实际位置,更具体地说,是手机两侧有两个光电探测器,以及一个直立放置的发射LED阵列。我们还研究了在典型办公环境中,误码率(BER)性能对移动中继设备方位角和仰角的依赖性。我们为VLC中基于AF和DF的中继提供了一种新的BER分析描述。此外,我们比较了基于AF和DF的系统,并表明在误码率<10且数据速率为100 Mb/s的情况下,DF在覆盖区域方面有小幅改善。数值结果还表明,与直接非视距VLC链路相比,基于中继的系统在覆盖范围方面有显著改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2ab/5948864/51e884175d9e/sensors-18-01125-g001.jpg

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