The Effect of Natural Light on the Performance of Visible Light Communication Systems
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The Effect of Natural Light on the Performance of Visible Light Communication Systems

Authors: Mahmoud Beshr, Ivan Andonovic, Moustafa H. Aly

Abstract:

Visible Light Communication (VLC) offers advantages of low energy consumption, licence free and RF interference free operation. One application area for VLC is in the provision of health centred services circumventing issues of interference with any biomedical device within the environment. VLC performamce is affected by natural light restricting systems avilability and relibility. The paper presents an analysis of the performance of VLC systems under different meteorological conditions. The evaluation considered the impact of natural light as a function of different reflection surfaces in different room sizes.

Keywords: Visible light communication, impulse reponse , performance analysis , natural light.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1060475

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[1] Light measurement guidance notes, www.skyeninstruments.com, 1- 2-2012, 19:45.
[2] Kwonhyung Lee; Hyuncheol Park; Barry, J.R., "Indoor Channel Characteristics for Visible Light Communications," Communications Letters, IEEE, vol.15, no.2, pp.217-219, February 2011.
[3] Gfeller, F.R.; Bapst, U., "Wireless in-house data communication via diffuse infrared radiation," Proceedings of the IEEE, vol.67, no.11, pp. 1474- 1486, Nov. 1979.
[4] Lubin Zeng; Hoa Le Minh; O'Brien, D.; Faulkner, G.; Kyungwoo Lee; Daekwang Jung; YunJe Oh; , "Equalisation for high-speed Visible Light Communications using white-LEDs," Communication Systems, Networks and Digital Signal Processing, 2008. CNSDSP 2008. 6th International Symposium, vol., no., pp.170-173, 25-25 July 2008.
[5] Barry, J.R.; Kahn, J.M.; Krause, W.J.; Lee, E.A.; Messerschmitt, D.G.; , "Simulation of multipath impulse response for indoor wireless optical channels," Selected Areas in Communications, IEEE Journal on , vol.11, no.3, pp.367-379, Apr 1993.
[6] J Komine, T.; Nakagawa, M.; "Fundamental analysis for visible-light communication system using LED lights," Consumer Electronics, IEEE Transactions, vol.50, no.1, pp. 100- 107, Feb 2004.
[7] Kahn, J.M.; Barry, J.R.; "Wireless infrared communications," Proceedings of the IEEE, vol.85, no.2, pp.265-298, Feb 1997.
[8] Ramirez, R.; Idrus, S. and Johor, s.; Optical wireless communications IR for wireless connectivity, CRC press, Taylor & Francis, 2008.
[9] Moreira,A.;Valadas,r.; and Duarte ,O.; Optical interference produced by artificial light, Science Publishers, Portugal, 1997.
[10] Sidorovich et.al. Solar background effects in wireless optical communications, proceeding of SPIE, Vol.4873, 2002.
[11] R. Billinton and W. Y. Li," Reliability Assessment of Electrical Power Systems Using Monte Carlo Method", Plenum Press, New York, 1994.