Open Access Journal

ISSN : 2394-2320 (Online)

International Journal of Engineering Research in Computer Science and Engineering (IJERCSE)

Monthly Journal for Computer Science and Engineering

Open Access Journal

International Journal of Engineering Research in Computer Science and Engineering (IJERCSE)

Monthly Journal for Computer Science and Engineering

ISSN : 2394-2320 (Online)

Visible Light Communication (VLC) Channel Modeling

Author : M.Mohanna 1 Raafat A.EL-Kammar 2 M.LotfyRabeh 3 Mohamed I.Gabr 4

Date of Publication :23rd February 2018

Abstract: The Radio Frequency (RF) suffers from interference with most electronic devices, limited, scar, expensive and also it can penetrate through walls that make it unsecure. To overcome these limitations, we used Visible Light Communication Technique (VLC) that use Light Emitting Diode (LED) for transferring data, in addition to its main function, lighting .VLC system uses LEDs due to its higher data rate, longer life time, easy to install and low cost, so it is preferred rather than other lighting sources. VLC transfers data over a range in Electromagnetic (EM) spectrum which is visible to human that’s from (380-750nm). In this paper, we report a simulation program for indoor visible light communication environment based on Matlab where we introduce both Line of Sight (LoS) and Non – Line of Sight (N-LoS) models for visible light source and photodiode in wireless communication and introduce for the first time the effect of reflections from the room four walls on the receiver surface.

Reference :

    1. Dobroslav Tsonev, Stefan Videv and Harald Haas, “Towards a 100 Gb/s visible light wireless access network” , 2015 Optical Society of America.
    2. Latif Ullah Khan, “Visible light communication: applications, architecture, standardization and research challenges”, Digital Communications and Networks 3 (2017) 78–88.
    3. Ignacio Marin-Garcia, Victor Guerra and Rafael PerezJimenez,” Study and Validation of Eavesdropping Scenarios over a Visible Light Communication Channel”, Sensors 2017, 17, 2687; doi: 10.3390/s17112687.
    4. M.Lotfy Rabeh, Mohamed I. Gabr and Tarek Hosny , “Data Transmission via Visible Light Communication (VLC) Technique” , International Journal of Innovative Research in Science, Engineering and Technology , Vol. 5, Issue 9, September 2016.
    5. Y. Tanaka, T. Komine, S. Haruyama and M. Nakagawa, “Indoor Visible Light Transmission System Utilizing White LED Lights,” IEICE Trans, on Communications, vol. E86-B, no. 8, pp. 2440- 2454, Aug. 2003.

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