DocumentCode
2085183
Title
Experimental demonstration of the compensation of nonlinear propagation in a LTE RoF system with a directly modulated laser
Author
Kanesan, T. ; Ng, W.P. ; Ghassemlooy, Zabih ; Chao Lu
Author_Institution
Opt. Commun. Res. Group, Northumbria Univ., Newcastle upon Tyne, UK
fYear
2013
fDate
9-13 June 2013
Firstpage
3884
Lastpage
3888
Abstract
This paper reveals that nonlinear propagation is a critical problem for the long term evolution (LTE) technology based on the radio-over-fibre (RoF) system. Therefore, a direct modulation based frequency dithering (DMFD) method is proposed for nonlinear propagation compensation, namely the self phase modulation (SPM) and stimulated brillouin scattering (SBS). We found that DMFD method operates substantially different in RoF systems. The major difference is that DMFD signal frequency fd has to be much smaller than the RoF carrier frequency fRF; thus the condition of {fd <;<; fRF} has to be stringently obeyed. Analysis of the optical launch power (OLP) with DMFD method reveals that the SBS threshold is above ~6 dBm for LTE-RoF system. In addition, we also unfold that DMFD method does not induce an additional distortion for the linear and optimum OLP regions, which are frequency chirp dependent. Hence the proposed method improves the LTE-RoF system without any shortcoming. Finally, at OLP values of 8 dBm and 10 dBm, LTE-RoF system exhibits an average error vector magnitude (EVM) improvement of ~4.32% and ~6.18%, respectively, for the 50 km transmission span.
Keywords
Long Term Evolution; optical modulation; phase modulation; radio-over-fibre; DMFD signal frequency; EVM; LTE RoF system; Long Term Evolution technology; RoF carrier frequency; SBS threshold; direct modulation based frequency dithering method; directly modulated laser; error vector magnitude; frequency chirp dependent; nonlinear propagation compensation; optical launch power; radio-over-fibre system; self phase modulation; stimulated Brillouin scattering; Frequency modulation; Long Term Evolution; OFDM; Phase shift keying; Photonics; Scattering; Long Term Evolution (LTE); Nonlinear Compensation; Optical OFDM (OOFDM); Radio-over-fibre (RoF);
fLanguage
English
Publisher
ieee
Conference_Titel
Communications (ICC), 2013 IEEE International Conference on
Conference_Location
Budapest
ISSN
1550-3607
Type
conf
DOI
10.1109/ICC.2013.6655163
Filename
6655163
Link To Document