DocumentCode
931793
Title
Estimating Dynamic Traffic Matrices by Using Viable Routing Changes
Author
Soule, Augustin ; Nucci, Antonio ; Cruz, Rene L. ; Leonardi, Emilio ; Taft, Nina
Author_Institution
Thomson Res., Paris
Volume
15
Issue
3
fYear
2007
fDate
6/1/2007 12:00:00 AM
Firstpage
485
Lastpage
498
Abstract
In this paper we propose a new approach for dealing with the ill-posed nature of traffic matrix estimation. We present three solution enhancers: an algorithm for deliberately changing link weights to obtain additional information that can make the underlying linear system full rank; a cyclo-stationary model to capture both long-term and short-term traffic variability, and a method for estimating the variance of origin-destination (OD) flows. We show how these three elements can be combined into a comprehensive traffic matrix estimation procedure that dramatically reduces the errors compared to existing methods. We demonstrate that our variance estimates can be used to identify the elephant OD flows, and we thus propose a variant of our algorithm that addresses the problem of estimating only the heavy flows in a traffic matrix. One of our key findings is that by focusing only on heavy flows, we can simplify the measurement and estimation procedure so as to render it more practical. Although there is a tradeoff between practicality and accuracy, we find that increasing the rank is so helpful that we can nevertheless keep the average errors consistently below the 10% carrier target error rate. We validate the effectiveness of our methodology and the intuition behind it using commercial traffic matrix data from Sprint´s Tier-1 backbone.
Keywords
IP networks; matrix algebra; telecommunication network routing; telecommunication traffic; Sprint Tier-1 backbone; carrier target error rate; dynamic traffic matrix; linear system full rank; link weights; origin-destination flows; traffic matrix estimation; traffic variability; variance estimates; Error analysis; Fault diagnosis; Internet; Linear systems; Routing; Spine; Telecommunication traffic; Tomography; Traffic control; Vectors; Network tomography; SNMP; traffic engineering; traffic matrix estimation;
fLanguage
English
Journal_Title
Networking, IEEE/ACM Transactions on
Publisher
ieee
ISSN
1063-6692
Type
jour
DOI
10.1109/TNET.2007.893227
Filename
4237155
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