DocumentCode
1557445
Title
Performance engineering and topological design of metro WDM optical networks using computer simulation
Author
Antoniades, Neophytos ; Boskovic, Aleksandra ; Tomkos, Ioannis ; Madamopoulos, Nicholas ; Lee, Mirim ; Roudas, Ioannis ; Pastel, David ; Sharma, Manish ; Yadlowsky, Michael J.
Author_Institution
Photonics Res. & Test Center, Corning Inc, Somerset, NJ, USA
Volume
20
Issue
1
fYear
2002
fDate
1/1/2002 12:00:00 AM
Firstpage
149
Lastpage
165
Abstract
This paper demonstrates the use of computer simulation for topological design and performance engineering of transparent wavelength-division multiplexing metropolitan-area networks. Engineering of these networks involves the study of various transport-layer impairments such as amplifier noise, component ripple, chirp/dispersion, optical crosstalk, waveform distortion due to filter concatenation, fiber nonlinearities, and polarization effects. A computer simulation methodology composed of three main simulation steps is derived and implemented. This methodology obtains performance estimations by applying efficient wavelength-domain simulations on the entire network topology, followed by time-/frequency-domain simulations on selected paths of the network and finally Q-budgeting on an identified worst case path. The above technique provides an efficient tool for topological design and network performance engineering. Accurate simulation models are presented for each of the performance impairments, and the computer simulation methodology is used for the design and engineering of a number of actual metro network architectures
Keywords
digital simulation; metropolitan area networks; network topology; optical fibre networks; telecommunication computing; wavelength division multiplexing; Q-budgeting; amplifier noise; chirp/dispersion; component ripple; computer simulation; fiber nonlinearities; filter concatenation; metro WDM optical networks; metro network architectures; network performance engineering; network topology; optical crosstalk; performance estimation; polarization effects; time-/frequency-domain simulations; topological design; transparent WDM metropolitan-area networks; transport-layer impairments; waveform distortion; wavelength-division multiplexing; wavelength-domain simulations; Computational modeling; Computer simulation; Design engineering; Optical crosstalk; Optical design; Optical distortion; Optical fiber polarization; Optical noise; Stimulated emission; Wavelength division multiplexing;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/49.974669
Filename
974669
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