期刊文献+

室内MIMO ACO-OFDM可见光通信系统接收机设计 被引量:15

Design of Indoor Receiver Using Multiple-Input and Multiple-Output ACO-OFDM Visible Light Communication System
原文传递
导出
摘要 设计了一种在室内可见光MIMO通信系统(MIMO-VLC)中使用具有两个不同视场角(FOV)的光电二极管(PD)的角度分集光接收机(2FOV-ADR),其兼具两个不同视场角的接收机(2-FOV)和传统角度分集接收机(ADR)的优点,实现了更优的接收性能。对将LED灯用作数据发射器的典型室内可见光通信场景进行仿真,结果表明,2FOV-ADR均衡器输出端的最小信噪比(minSNR)要高于2-FOV接收机和传统ADR,实现了室内97%的位置的minSNR在45 dB以上,相比于前两种接收机,这一比例分别提高了96%和32%。最后,对使用非对称限幅光正交频分复用(ACO-OFDM)作为调制方案的系统,计算总误码率(BER),给出了迫零和最小均方误差均衡器的结果。结果表明,对于所考虑的室内位置,2FOV-ADR都具有最低的误码率。 In this study,we design an angle diversity optical receiver using photodiodes with two different fields of view(FOV)for indoor multiple-input and multiple-output visible light communication systems.The system combines the advantages of the receiver with two different FOV(2-FOV)and traditional angle diversity receiver(ADR)to achieve better reception performance.Furthermore,simulation of a typical indoor visible light communication scenario using light-emitting diode lamps as the data transmitters is performed.In our simulation,the minimum signal-to-noise ratio(minSNR)at the output end of an equalizer in the proposed system is higher than those of the 2-FOV receiver and the conventional ADR,which achieves the minSNR of over 45 dB in 97%of indoor locations.The ratio is increased by 96%and 32%compared to those of the 2-FOV receiver and conventional ADR,respectively.Finally,the total bit error rate is calculated for the system using asymmetrically clipped optical orthogonal frequency division multiplexing as the modulation scheme,and the results of the zero-forcing equalizer and minimum mean square error equalizer are given.The results demonstrate that the proposed receiver has the lowest bit error rate for the indoor locations under consideration.
作者 张琦 岳殿武 Zhang Qi;Yue Dianwu(Information Science and Technology College,Dalian Maritime University,Dalian,Liaoning116026,China)
出处 《中国激光》 EI CAS CSCD 北大核心 2020年第1期210-219,共10页 Chinese Journal of Lasers
基金 国家自然科学基金(61371091) 大连海事大学研究生教育教学改革研究项目(YJG2019205)。
关键词 光通信 角度分集接收机 视场角 最小信噪比 误码率 optical communications angle diversity receiver field of view minimum signal-to-noise ratio bit error rate
  • 相关文献

参考文献4

二级参考文献29

  • 1Komine T, Nakagawa M. Fundamental analysis for visible light communication system using LED lights [J]- IEEE Transactions on Consumer Electronics, 2004, 50(1) : 100-107.
  • 2Li H L, Chen X B, Huang B J, et aL.. High bandwidth visible light communications based on a post equalization circuit [J]. IEEEPhotonics Technology Letters, 2014, 26(2): 119-122.
  • 3Zeng L, O' brien D, Minh H, et aL.. High data rate multiple input multiple output (MIMO) optical wirelesscommunications using white LED lighting[J]. IEEE Journal on Selected Areas in Communications, 2009, 27 (9): 1654- 1662.
  • 4Nuwanpriya A, Ho S W, Chen C S. Angle diversity receiver for indoor MIMO visible light communications[C]. 2014 Globecom Workshops (GC Wkshps), 2014: 444-449.
  • 5Wang T Q, Sekercioglu Y A, Armstrong J. Analysis of an optical wireless receiver using a hemispherical lens with application in MIMO visible light communications[J]. Journal of Lightwave Technology, 2013, 31(11): 1744-1754.
  • 6Wang T Q, Armstrong J. Performance of indoor MIMO optical wireless system using linear receiver with prism array [C]. 2014 Australian Communications Theory Workshop (AusCTW), 2014: 51-56.
  • 7Hong Y, Chen J, Wang Z, et al.. Performance of a precoding MIMO system for decentralized multiuser indoor visible light communications[J]. IEEE Photonics Journal, 2013, 5(4): 7800211.
  • 8Fath T, Haas H. Performance comparison of MIMO techniques for optical wireless communications in indoor environments[J]. IEEE Transactions on Communications, 2013, 61(2):733-742.
  • 9Tran N A, Luong D A, Thang T C, et al.. Performance analysis of indoor MIMO visible light communication systems [C]. 2014 IEEE Fifth International Conference on Communications and Electronics (ICCE), 2014: 60-64.
  • 10Carruthers J B, Kahn J M. Multiple-subcarrier modulation for nondirected wireless infrared communication [J] . IEEE Journal on Selected Areas in Communications, 1996, 14(3) : 538-546.

共引文献110

同被引文献121

引证文献15

二级引证文献98

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部