Title :
Radio over Fibre networks: Low cost solution for different applications and emerging technologies
Author :
Dayoub, I. ; Zouin, Y. ; Foubat, A. Okasa M ; Rouvaen, J.M. ; Vilcot, J.P. ; Decoster, D.
Author_Institution :
UMR CNRS, Univ. de Valenciennes et du Hainaut-Cambresis
Abstract :
Hybrid fibre radio (HFR) is a potential solution for combining the capacity of optical networks with the flexibility and mobility of wireless access networks. The vast majority of present consumers believe on the new notion "to be always on communication, anywhere, and with anything". Either outdoor or indoor wireless coverage of the last few end-subscriber meters is being essential part of broadband communication networks. While single mode fibre is used in outdoor systems, new buildings have pre-installed multimode fibre (MMF). After proposing and evaluating a low-cost single-user HFR demonstrator for indoor applications, multi-users transmissions, using optical code division multiple access (O-CDMA), are suggested. In order to mitigate the multiple access interferences (MAI), which enfeeble significantly O-CDMA conventional receiver (CR) performances, we propose and discuss the multi-user detectors (MUD) for optical networks. Both optical parallel interference cancellation system (Opt-PIC) and optical serial cancellation system (Opt-SIC) in an O-CDMA network are discussed
Keywords :
code division multiple access; interference suppression; light interference; multiuser detection; optical fibre networks; radio access networks; radio-over-fibre; O-CDMA conventional receiver performances; O-CDMA network; broadband communication networks; hybrid fibre radio; low-cost single-user HFR demonstrator; multimode fibre; multiple access interferences; multiuser detectors; multiusers transmissions; optical code division multiple access; optical networks; optical parallel interference cancellation system; optical serial cancellation system; radio over fibre networks; single mode fibre; wireless access networks; Broadband communication; Communication networks; Costs; Interference cancellation; Multiaccess communication; Multiple access interference; Optical fiber communication; Optical fiber networks; Optical receivers; Wireless networks;
Conference_Titel :
Information and Communication Technologies, 2006. ICTTA '06. 2nd
Conference_Location :
Damascus
Print_ISBN :
0-7803-9521-2
DOI :
10.1109/ICTTA.2006.1684807