Pešek Petr, Zvanovec Stanislav, Chvojka Petr, Bhatnagar Manav R, Ghassemlooy Zabih, Saxena Prakriti
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.
Sensors (Basel). 2018 Apr 7;18(4):1125. doi: 10.3390/s18041125.
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.
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。