DocumentCode
966512
Title
Recent Advances in Ultrahigh Bit Rate ETDM Transmission Systems
Author
Lach, Eugen ; Schuh, Karsten
Author_Institution
Alcatel Res. & Innovation, Stuttgart
Volume
24
Issue
12
fYear
2006
Firstpage
4455
Lastpage
4467
Abstract
Increase of Internet traffic and introduction of triple-play services force operators to increase network capacity at moderate costs. Introduction of higher electronic time-division multiplexing (ETDM) channel bit rate targets reduce the cost per bit for the transmission due to lower power consumption, smaller footprint, less management effort, and complexity of the systems. Improved performance of electronic and optoelectronic components allows for research on ETDM bit rates beyond 40 Gb/s, which is currently the highest standardized channel bit rate for optical telecommunication networks. In this paper, an overview of recent progress in high-speed ETDM technology for 80 Gb/s and beyond and results of high-speed ETDM transmission experiments are given. Currently, the speed of electronics enables ETDM systems with line rates of 80/85 Gb/s and even 100 Gb/s, which is expected to be the next generation of Ethernet in data communication
Keywords
high-speed optical techniques; optical communication equipment; optical fibre LAN; time division multiplexing; 100 Gbit/s; 80 Gbit/s; 85 Gbit/s; Ethernet; Internet traffic; channel bit rate; data communication; electronic components; electronic time-division multiplexing; high-speed ETDM technology; network capacity; optical telecommunication networks; optoelectronic components; ultrahigh bit rate transmission systems; Bit rate; Costs; Energy consumption; Energy management; High speed optical techniques; IP networks; Optical devices; Power system management; Telecommunication traffic; Web and internet services; Optical communication; optical receivers; optical transmitters; time-division multiplexing;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2006.886404
Filename
4063413
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