DocumentCode
1511116
Title
Comparison of buffering strategies for asymmetric packet switch modules
Author
Liew, Soung C. ; Lu, Kevin W.
Author_Institution
Bell Commun. Res., Morristown, NJ, USA
Volume
9
Issue
3
fYear
1991
fDate
4/1/1991 12:00:00 AM
Firstpage
428
Lastpage
438
Abstract
The performance of a class of asymmetric packet switch modules with channel grouping is analyzed. The switch module considered has n inputs and m outputs. A packet destined for a particular output address (out of g ) needs to access only one of the r available physical output ports: m =gr . These switch modules are the key building blocks in many large multistage switch architectures. The focus is on the performance of input-buffered and output-buffered switch modules under geometrically bursty traffic. A combination of exact derivation, numerical analysis, and simulation yields the saturation throughput of input-buffered switch modules and the mean delay of the input-buffered and output-buffered switch modules. Tables and formulas useful for traffic engineering are presented. The results show that increasing the number of output ports per output address (r ) can significantly improve switch performance, especially when traffic is bursty. Although output-buffered switch modules have significantly better performance than input-buffered switch modules when there are equal numbers of input and output ports, this performance difference becomes significantly smaller when the switch dimensions are asymmetric
Keywords
buffer storage; packet switching; queueing theory; ATM transport; asymmetric packet switch modules; buffering strategies; channel grouping; exact derivation; geometrically bursty traffic; input-buffered switch modules; mean delay; numerical analysis; output-buffered switch modules; performance; queueing; saturation throughput; simulation; Analytical models; Asynchronous transfer mode; Communication switching; Delay; Packet switching; Performance analysis; Performance gain; Switches; Throughput; Traffic control;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/49.76642
Filename
76642
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