DocumentCode
3579501
Title
XG-FAST: Towards 10 Gb/s copper access
Author
Coomans, Werner ; Moraes, Rodrigo B. ; Hooghe, Koen ; Duque, Alex ; Galaro, Joe ; Timmers, Michael ; van Wijngaarden, Adriaan J. ; Guenach, Mamoun ; Maes, Jochen
Author_Institution
Bell Labs., Alcatel-Lucent, Antwerp, Belgium
fYear
2014
Firstpage
630
Lastpage
635
Abstract
Traditionally, copper network operators complement a Fiber-to-the-Home (FTTH) strategy with a hybrid fiber-copper deployment in which fiber is gradually brought closer to the consumer, and Digital Subscriber Line (DSL) technology is used for the remaining copper network. In this paper, we propose the system concepts of XG-FAST, a technology capable of delivering 10 Gb/s connection speeds over short copper pairs. With a hardware proof-of-concept platform, it is shown that multi-gigabit speeds are achievable over typical drop lengths from front yard to customer premises equipment of up to 70 m. When an additional pair is available, 10 Gb/s service is shown to be possible up to 30 m by exploiting bonding and phantom mode. The XG-FAST technology will make Fiber-to-the-Door deployments feasible, which avoids many of the hurdles accompanying a traditional FTTH roll-out. Single subscriber XG-FAST devices would be an integral component of FTTH deployments, and as such help accelerate a worldwide roll-out of FTTH services. Standardization is required to specify the physical layer and the interface with the fiber network.
Keywords
digital subscriber lines; optical fibre subscriber loops; DSL technology; FTTH deployment; FTTH rollout; XG-FAST device; bit rate 10 Gbit/s; bonding mode; copper network operators; copper pair; digital subscriber line; fiber network; fiber-to-the-door deployment; fiber-to-the-home; hybrid fiber copper deployment; phantom mode; physical layer; standardisation; Bandwidth; Bonding; Communication cables; Copper; DSL; Optical fiber cables; Phantoms;
fLanguage
English
Publisher
ieee
Conference_Titel
Globecom Workshops (GC Wkshps), 2014
Type
conf
DOI
10.1109/GLOCOMW.2014.7063503
Filename
7063503
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