DocumentCode
1055276
Title
Efficient Transmission Scheme for AWG-Based DWDM Millimeter-Wave Fiber-Radio Systems
Author
Gamage, Prasanna A. ; Nirmalathas, A. ; Lim, C. ; Bakaul, M. ; Novak, D. ; Waterhouse, R.
Author_Institution
ARC Special Res. Centre for Ultra Broadband Inf. Networks, Univ. of Melbourne, Vic.
Volume
19
Issue
4
fYear
2007
Firstpage
206
Lastpage
208
Abstract
We propose and demonstrate an upstream transmission scheme using a semiconductor optical amplifier (SOA) for arrayed waveguide grating (AWG)-based dense wavelength-division-multiplexed (DWDM) millimeter-wave fiber-radio systems and show improved link performance. In our scheme, unused optical carriers from the cyclic AWG in the downlink (DL) are tapped for uplink (UL) transmission. An SOA in conjunction with the AWG simultaneously amplifies the DL RF subcarriers and UL optical carrier, thus improving carrier-to-sideband ratio in the DL while also yielding an improved power budget for the UL. Our experimental results show that the proposed scheme can be a practical solution for future bidirectional wavelength interleaved DWDM transmission systems
Keywords
arrayed waveguide gratings; microwave photonics; optical communication equipment; radio-over-fibre; semiconductor optical amplifiers; wavelength division multiplexing; arrayed waveguide grating; bidirectional wavelength interleaving; carrier-to-sideband ratio; dense wavelength division multiplexing; downlink; fiber-radio systems; link performance; millimeter-wave systems; optical carriers; semiconductor optical amplifier; transmission scheme; upstream transmission; Arrayed waveguide gratings; Downlink; Fiber gratings; Optical arrays; Optical waveguides; Radio frequency; Semiconductor optical amplifiers; Semiconductor waveguides; Stimulated emission; Wavelength division multiplexing; Arrayed waveguide grating (AWG); carrier-to-sideband ratio (CSR); millimeter-wave (mm-wave) fiber-radio; multiplexer/demultiplexer; optical single sideband modulation; wavelength interleaving (WI);
fLanguage
English
Journal_Title
Photonics Technology Letters, IEEE
Publisher
ieee
ISSN
1041-1135
Type
jour
DOI
10.1109/LPT.2006.889986
Filename
4077077
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