Title :
Optical amplify-and-forward multihop WDM/FSO for all-optical access networks
Author :
Trinh, Phuc V. ; Dang, Ngoc T. ; Pham, Anh T.
Author_Institution :
Comput. Commun. Lab., Univ. of Aizu, Aizu-Wakamatsu, Japan
Abstract :
Multihop free space optical (FSO) system using optical amplify-and-forward (OAF) relaying technique combined with wavelength division multiplexing (WDM) is proposed for all-optical access networks. The proposed system can provide a low cost, flexible, and high-bandwidth access network for multiple users. To investigate the system performance, we consider a special case of dual-hop WDM-FSO system taking into account the effects of all noises, interchannel crosstalk, as well as path loss and geometric spreading of optical beam over atmospheric turbulence channels. In addition, pulse position modulation (PPM) is employed for improving the overall performance. Our results show that OAF technique combined with PPM scheme can be a good solution for mitigating the effect of atmospheric turbulence. Moreover, the required amplifier gain corresponding to a specific value of BER, transmission distance, and turbulence strength is quantitatively discussed. Finally, the adverse effect of interchannel crosstalk in the upstream transmission is also evaluated.
Keywords :
adjacent channel interference; amplify and forward communication; interference suppression; optical crosstalk; optical fibre subscriber loops; relay networks (telecommunication); wavelength division multiplexing; BER value; OAF relaying technique; PPM scheme; all-optical access network; amplifier gain; atmospheric turbulence channel; atmospheric turbulence effect mitigation; dual-hop WDM-FSO system; free space optical system; geometric spreading; interchannel crosstalk; multiple user; optical amplify-and-forward multihop WDM-FSO; optical beam; path loss; pulse position modulation; turbulence strength; upstream transmission; wavelength division multiplexing; Bit error rate; Noise; Optical crosstalk; Passive optical networks; Stimulated emission; Wavelength division multiplexing; All-optical access networks; FSO; Relaying technique; WDM;
Conference_Titel :
Communication Systems, Networks & Digital Signal Processing (CSNDSP), 2014 9th International Symposium on
Conference_Location :
Manchester
DOI :
10.1109/CSNDSP.2014.6923995