Indoor visible light communication: modeling and analysis of multi-state modulation

The new dynamic direction of wireless networks development is based on the idea of networks utilizing the optical radiation in the visible spectrum VLC (Visible Light Communications). The impulse of this development direction was improvement in the semiconductor lighting technologies, namely the white power LEDs (Light Emitting Diode). These types of wireless networks are denoted as the optical wireless networks for indoor spaces utilizing optical radiation in the visible spectrum. The paper deals with the issue of deployment of multi-state modulations into the indoor visible light communications in LOS (Line of Sight) configuration. The first part of the paper focuses on design of modulation element (SMD LED matrix 3 × 3) and problems connected to deployment of multi-state modulation M-QAM (subcarrier intensity modulation) through this modulation element into the indoor visible light communications (MER). The second part deals with the irradiation distribution in dark room in comparison with real room during used multi-state modulation scheme in both simulation and real measurement.

[1]  Vladimir Vasinek,et al.  Simple and Universal Current Modulator Circuit for Indoor Mobile Free-Space-Optical Communications Testing , 2014 .

[2]  Radek Martinek,et al.  The Real Implementation of ANFIS Channel Equalizer on the System of Software-Defined Radio , 2014 .

[3]  Govind P. Agrawal,et al.  Fiber-optic communication system , 2002 .

[4]  K. Langer,et al.  513 Mbit/s Visible Light Communications Link Based on DMT-Modulation of a White LED , 2010, Journal of Lightwave Technology.

[5]  Michal Lucki,et al.  Benefits and Limits of Modulation Formats for Optical Communications , 2014 .

[6]  Julian Cheng,et al.  Alamouti-type STBC for subcarrier intensity modulated wireless optical communications , 2012, 2012 IEEE Global Communications Conference (GLOBECOM).

[7]  Masao Nakagawa,et al.  Atmospheric optical communication system using subcarrier PSK modulation , 1993, Proceedings of ICC '93 - IEEE International Conference on Communications.

[8]  Lu Chao,et al.  Optical fibre transmission of a broadband subcarrier multiplexed signal using PTM techniques , 1996 .

[9]  Vladimir Vasinek,et al.  Possible use of power LEDs for lighting and communication , 2011 .

[10]  Radek Martinek,et al.  The implementation of channel coding into the digital transmission chain consisting of VSG PXI-5670 - VSA PXI-5661 , 2013 .

[11]  John R. Barry,et al.  Indoor Channel Characteristics for Visible Light Communications , 2011, IEEE Commun. Lett..

[12]  D. H. Mash,et al.  Light-emitting diodes , 1977, Nature.