DocumentCode
3340721
Title
Performance comparison of a class of slotted ring networks
Author
Kang, Cheoul-Shin ; Park, Byung-Seok ; Rhee, Ill-Keun
Author_Institution
Commun. Networking Lab., Hannam Univ., Taejon, South Korea
fYear
1995
fDate
27-29 July 1995
Firstpage
220
Lastpage
226
Abstract
Much has been previously written about the performance of slotted ring networks. However, the results are not appropriate to apply for the new generation slotted rings, like counter-rotating multichannel slotted rings. In this paper, a novel technique for quantitative measurement of average transfer delay of a class of slotted rings is presented. The approach is expanded to compare the average transfer delay of various slotted rings including counter-rotating multichannel slotted ring networks. An extensive simulation study has been carried out to verify the derived analytical results. The analytical results show an excellent agreement with simulation results over a broad range of parameters. The average transfer delay of the counter-rotating slotted ring network is about half that of the conventional multichannel slotted rings. Spatial reuse using the counter-rotating channel configuration also increases the effective ring throughput significantly, compared to conventional simple multichannel ring networks. The results show that the major part of the cell transfer delay comes from the propagation delay from a source to a destination. It is also observed that the network throughput depends upon the aggregated transmission capacity of the network.
Keywords
delays; local area networks; metropolitan area networks; performance evaluation; LAN; MAN; aggregated transmission capacity; average transfer delay; counter-rotating channel configuration; counter-rotating multichannel slotted rings; effective ring throughput; performance; propagation delay; simulation; slotted ring networks; spatial reuse; Analytical models; Contracts; Electronic mail; Laboratories; Optical devices; Optical fiber devices; Optical fiber networks; Power engineering and energy; Propagation delay; Throughput;
fLanguage
English
Publisher
ieee
Conference_Titel
Computers and Communications, 1995. Proceedings., IEEE Symposium on
Conference_Location
Alexandria, Egypt
Print_ISBN
0-8186-7075-4
Type
conf
DOI
10.1109/SCAC.1995.523670
Filename
523670
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