DocumentCode
837291
Title
Performance Preserving Topological Downscaling of Internet-Like Networks
Author
Papadopoulos, Fragkiskos ; Psounis, Konstantinos ; Govindan, Ramesh
Author_Institution
Dept. of Electr. Eng., Univ. of Southern California, Los Angeles, CA
Volume
24
Issue
12
fYear
2006
Firstpage
2313
Lastpage
2326
Abstract
The Internet is a large, heterogeneous system operating at very high speeds and consisting of a large number of users. Researchers use a suite of tools and techniques in order to understand the performance of complex networks like the Internet: measurements, simulations, and deployments on small to medium-scale testbeds. This work considers a novel addition to this suite: a class of methods to scale down the topology of the Internet that enables researchers to create and observe a smaller replica, and extrapolate its performance to the expected performance of the larger Internet. This is complementary to the work of Psounis, 2003, where the authors presented a way to scale down the Internet in time, by creating a slower replica of the original system. The key insight that we leverage in this work is that only the congested links along the path of each flow introduce sizable queueing delays and dependencies among flows. Hence, one might hope that the network properties can be captured by a topology that consists of the congested links only. Using extensive simulations with transmission control protocol (TCP) traffic and theoretical analysis, we show that it is possible to achieve this kind of performance scaling even on topologies the size of the CENIC backbone (that provides Internet access to higher education institutions in California). We also show that simulating a scaled topology can be up to two orders of magnitude faster than simulating the original topology
Keywords
Internet; queueing theory; telecommunication congestion control; telecommunication network topology; telecommunication traffic; transport protocols; CENIC backbone; Internet; TCP; congested link; heterogeneous system; network topology; queueing delay; transmission control protocol traffic; Efficient network simulation; performance prediction; topology downscaling; transmission control protocol (TCP)/closed-loop networks;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/JSAC.2006.884029
Filename
4016153
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