DocumentCode :
1628963
Title :
SCM millimeter-wave (37 GHz) optical transport system for distribution of video and data signals
Author :
Ahmed, Z. ; Novak, D. ; Liu, H.F.
Author_Institution :
Dept. of Electr. & Electron. Eng., Melbourne Univ., Parkville, Vic., Australia
fYear :
1997
Firstpage :
337
Lastpage :
338
Abstract :
Millimeter-wave (mm-wave) optical fiber transport links will greatly simplify the architectures of future high-capacity cellular systems, indoor wireless LANs and video-on-demand systems. In addition to supporting low loss and EMI free transport of broadband signals, these links enable deployment of miniature, functionally simple and easily installable radio infrastructure at signals distribution points. Attempts towards implementing mm-wave signal distribution schemes have so far considered systems transmitting either data or video signals. Future cellular systems and interactive multimedia applications will, however, require multichannel operation where video and data signals are transmitted simultaneously. In this paper, we present the first subcarrier multiplexed (SCM) mm-wave system transporting digital data and video signals simultaneously over 10 km of standard single-mode fiber (SMF)
Keywords :
cellular radio; multimedia communication; optical fibre subscriber loops; subcarrier multiplexing; television networks; video signals; wireless LAN; 37 GHz; EMI free transport; SCM millimeter-wave GHz optical transport system; SCM mm-wave system; broadband signals; cellular systems; data signal distribution; easily installable radio infrastructure; functionally simple; high-capacity cellular systems; indoor wireless LANs; interactive multimedia applications; low loss; mm-wave optical fiber transport links; mm-wave signal distribution schemes; multichannel operation; signals distribution points; standard single-mode fiber; subcarrier multiplexed; video signal distribution; video signals; video-on-demand systems; Binary phase shift keying; Electrons; Electrooptic modulators; Intensity modulation; Laboratories; Microwave photonics; Optical fibers; Optical modulation; RF signals; Radio frequency;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Optical Fiber Communication. OFC 97., Conference on
Conference_Location :
Dallas, TX
Print_ISBN :
1-55752-480-7
Type :
conf
DOI :
10.1109/OFC.1997.719942
Filename :
719942
Link To Document :
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