Title :
Full-Duplex DOCSIS/WirelessDOCSIS Fiber–Radio Network Employing Packaged AFPMs as Optical/Electrical Transducers
Author :
Liu, Chin-Pang ; Polo, Valentín ; Van Dijk, Frédéric ; Pfrommer, Holger ; Piqueras, Miguel Ángel ; Herrera, Javier ; Martínez, Alejandro ; Karlsson, Stefan ; Kjebon, Olle ; Schatz, Richard ; Enard, Alain ; Yu, Yichuan ; Tsegaye, Tedros ; Chuang, Chin-Hsiu
Author_Institution :
Univ. Coll. London, London
fDate :
3/1/2007 12:00:00 AM
Abstract :
A hybrid fiber-radio access network architecture for simultaneous wireline and wireless transmissions of data-over-cable service interface specification (DOCSIS) signals is presented. An all-optical harmonic up-conversion technique using a dual-drive Mach-Zehnder modulator provides the downstream optical signal modulated not only at the intermediate frequency in the 600- to 900-MHz band for wireline transmission but also at the up-converted frequency in the 5.45- to 5.75-GHz band for wireless transmission. An InGaAsP/InGaAsP multiple-quantum-well asymmetric Fabry-Perot modulator/detector has been designed, fabricated, and packaged and has been employed in the base station (BS) as an optical/electrical transducer, simultaneously providing the functions of optical intensity modulation and photodetection. At the BS, the DOCSIS signals are recovered at the wireline and wireless frequencies for the respective feeding of a cable access network or a fixed wireless access network in a highly flexible approach. Full-duplex operation has been demonstrated for both access types in an indoor laboratory environment. In a subsequent small-scale field trial, real-life Internet traffic provided by a local community antenna television system operator has been transported over the present hybrid fiber-radio access network architecture, and simultaneous transmission of both DOCSIS and digital television signals has also been performed.
Keywords :
III-V semiconductors; Internet; digital television; gallium arsenide; indium compounds; integrated optics; microwave photonics; optical communication equipment; optical fibre subscriber loops; optical harmonic generation; optical modulation; packaging; photodetectors; quantum well devices; radio-over-fibre; telecommunication traffic; transducers; InGaAsP-InGaAsP; InGaAsP-InGaAsP multiple-quantum-well; all-optical harmonic upconversion; asymmetric Fabry-Perot detector; asymmetric Fabry-Perot modulator; cable access network; digital television signals; downstream optical signal; electrical transducers; fiber-radio network; frequency 5.45 GHz to 5.75 GHz; frequency 600 MHz to 900 MHz; full-duplex data-over-cable service interface specification; full-duplex operation; hybrid fiber-radio access network; local community antenna television system operator; optical intensity modulation; optical signal modulation; optical transducers; packaged axial-flux permanent magnet; photodetection; real-life Internet traffic; wireless transmission; wireline transmission; Base stations; Fabry-Perot; Frequency; Intensity modulation; Optical design; Optical fiber networks; Optical modulation; Packaging; Quantum well devices; Transducers; Asymmetric Fabry–Pérot Modulator (AFPM); broadband access networks; frequency conversion; hybrid fiber-wireless access networks; microwave photonics; radio-on-fiber;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2006.889674