Title :
Hybrid radio-visible light downlink performance in RF sensitive indoor environments
Author :
Hussain, Syed Imtiaz ; Abdallah, Mohamed M. ; Qaraqe, Khalid A.
Author_Institution :
Texas A&M Univ. at Qatar, Doha, Qatar
Abstract :
Visible light communications (VLC) is an emerging technology for indoor wireless networks which uses unregulated visible spectrum in the optical range. Since it is safe to use visible light as communication medium in radio frequency (RF) prone environments, VLC may provide harmless downlink connectivity in such scenarios. In this paper, we analyze an indoor RF sensitive environment where RF propagation is blocked intentionally and the downlink is provided through a VLC network. However, this indoor VLC network is connected to the outside world through a relay using an RF wireless link to a base station. Hence, a hybrid radio-visible light wireless link enables the base station to reach the end users. The relay amplifies the received signal from the base station and modulates it onto the intensities of the optical transmitters which provide the indoor coverage. Due to several transmitters, user nodes may receive multiple line of sight signals resulting in a multi-tap channel. We investigate this indoor optical channel and propose a statistical model that fits in this situation. We use the proposed model to derive the expressions for outage probability of the hybrid downlink.
Keywords :
indoor environment; indoor radio; light propagation; optical fibre networks; optical links; optical modulation; optical transmitters; probability; radio links; radio networks; radiowave propagation; relay networks (telecommunication); statistical analysis; RF propagation; RF wireless link; VLC network; base station; hybrid radio-visible light downlink performance; hybrid radio-visible light wireless link; indoor RF sensitive indoor environment; indoor optical channel; indoor wireless network; optical modulation; optical transmitter; outage probability; radiofrequency prone environment; relay amplification; statistical model; unregulated visible spectrum; visible light communication; Downlink; Light emitting diodes; Optical sensors; Optical transmitters; Probability density function; Radio frequency; Wireless communication; Visible light communications; channel modeling; optical wireless; relaying;
Conference_Titel :
Communications, Control and Signal Processing (ISCCSP), 2014 6th International Symposium on
Conference_Location :
Athens
DOI :
10.1109/ISCCSP.2014.6877821