DocumentCode
1850010
Title
An alternative access technology for next generation networks based on full-optical wireless communication links
Author
Matsumoto, Mitsuji ; Kazaura, Kamugisha ; Dat, Pham ; Shah, Alam ; Omae, Kazunori ; Suzuki, Toshiji ; Wakamori, Kazuhiko ; Higashino, Takeshi ; Tsukamoto, Katsutoshi ; Komaki, Shozo
Author_Institution
Global Inf. & Telecommun. Inst. (GITI), Waseda Univ., Saitama
fYear
2008
fDate
12-13 May 2008
Firstpage
221
Lastpage
228
Abstract
In order to provide telecommunications services in the envisaged next generation network (NGN), a packet based network utilizing multiple broadband, QoS-enabled transport technologies and in which the service related functions are independent of the underlying transport related functions is required. Optical wireless communication (OWC) systems will play an important role as alternative broadband access technology in the emerging NGNs. We have developed a revolutionaiy new full-optical wireless communication (F- OWC) system which operates by directly propagating an optical beam from a fiber termination point through free-space using a F-OWC transceiver. At the receiving end a corresponding transceiver directly couples the free-space propagated optical beam into an optical fiber connection port. In this paper we present the design concept and highlights of this new F-OWC system utilizing an innovative technology for seamless coupling a free-space propagated optical beam to a fiber. Experimental results, based on a prototype system, demonstrate that the system is capable of offering stable, error-free transmission at multiple giga-bit per second data rates over extended periods of time.
Keywords
optical communication equipment; optical fibre networks; optical links; transceivers; F-OWC transceiver; error-free transmission; fiber termination point; full-optical wireless communication links; next generation networks; optical beam; optical fiber connection port; Next generation networking; Optical beams; Optical coupling; Optical design; Optical fiber communication; Optical fibers; Optical propagation; Telecommunication services; Transceivers; Wireless communication; Full-Optical Wireless Communication (FOWC) system; Next Generation Network (NGN); access technology; atmospheric turbulence; optical fiber;
fLanguage
English
Publisher
ieee
Conference_Titel
Innovations in NGN: Future Network and Services, 2008. K-INGN 2008. First ITU-T Kaleidoscope Academic Conference
Conference_Location
Geneva
Print_ISBN
978-92-61-12441-0
Type
conf
DOI
10.1109/KINGN.2008.4542269
Filename
4542269
Link To Document