Title
Clean-slate design of next-generation optical access
Abstract
We report the current status of our research on the clean-slate design of next-generation optical access (NGOA). We have been studying candidate architectures with a major focus on their elasticity to user demands, energy efficiency, and support of better Quality of Experience (QoE). One of the major challenges in this study is to establish a comparative analysis framework where we can assess the performances of candidate architectures in an objective and quantifiable way. In this paper we describe our efforts to meet this challenge: (1) the development of a new comparison framework based on integrated QoE and statistical hypothesis testing and (2) the implementation of a virtual test bed capturing important aspects from physical layer to application layer to end-user behaviour governing traffic generation. The comparison framework and the virtual test bed will provide researchers a sound basis and useful tools for comparative analysis in the clean-slate design of NGOA.
Year
DOI
Venue
2013
10.1109/ICTON.2011.5970910
Transparent Optical Networks
Keywords
Field
DocType
time division multiplexing-passive optical networks,statistical hypothesis testing,next generation networks,quality-of-service,time division multiplexing,quality of service,optical access,passive optical networks,network traffic generation,clean-slate design,next-generation optical access system,optical design,telecommunication network planning,optical design techniques,tdm-pon,virtual test bed,telecommunication traffic,energy efficiency,comparison framework,computer architecture,wavelength division multiplexing,physical layer,air pollution,energy efficient,comparative analysis
Traffic generation model,Next-generation network,Application layer,Efficient energy use,Computer science,Passive optical network,Computer network,Quality of service,Physical layer,Quality of experience
Journal
Volume
ISSN
ISBN
abs/1308.5811
2161-2056 E-ISBN : 978-1-4577-0880-0
978-1-4577-0880-0
Citations 
PageRank 
References 
1
0.48
5
Authors
3
Name
Order
Citations
PageRank
Kyeong Soo Kim112026.16
Karin Ennser2102.21
Yogesh Kumar Dwivedi3155897.69