Title :
Distribution of Millimeter-Wave and Baseband Services Over an Integrated Reconfigurable Access Network Platform
Author :
Tsekrekos, Christos P. ; Kuri, Toshiaki ; Kitayama, Ken-ichi
Author_Institution :
Dept. of Electr., Electron., & Inf. Eng., Osaka Univ., Suita, Japan
Abstract :
An experimental investigation is presented that demonstrates how optical tunable filtering and polarization demultiplexing can be used to realize reconfigurable remote access nodes (RAN) in the context of future access networks that integrate diverge services. In particular, transmission of 60-GHz radio-over-fiber and baseband signals is successfully shown considering two reconfigurable RAN architectures. One based on optical tunable filtering and polarization demultiplexing and another one based only on optical tunable filtering. The perceived network architecture is that of multilevel ring/bus configuration and a two-RAN experiment shows the robustness of polarization multiplexing/demultiplexing in such a reconfigurable access network solution. The assets of physical-layer reconfigurability are discussed.
Keywords :
optical filters; optical tuning; radio-over-fibre; baseband services; frequency 60 GHz; future access networks; integrated reconfigurable access network platform; millimeter-wave services; optical tunable filtering; physical-layer reconfigurability; polarization demultiplexing; polarization multiplexing; radio-over-fiber; reconfigurable access network solution; reconfigurable remote access nodes; Baseband; Context-aware services; Demultiplexing; Filtering; Integrated optics; Nonlinear optics; Optical fiber networks; Optical filters; Optical network units; Optical polarization; Optical receivers; Radio access networks; Robustness; Dynamic channel allocation; fiber-to-the-home (FTTH); integrated optical access network; millimeter-wave; polarization demultiplexing (PolDemux); polarization multiplexing (PolMux); radio-over-fiber (RoF); supercontinuum light source; tunable optical filter; wavelength division multiplexing (WDM);
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2010.2063015