DocumentCode :
1283058
Title :
Structural Models for Dual Modality Data With Application to Network Tomography
Author :
Singhal, Harsh ; Michailidis, George
Author_Institution :
Consumer Risk, Bank of America, Charlotte, NC, USA
Volume :
57
Issue :
8
fYear :
2011
Firstpage :
5054
Lastpage :
5071
Abstract :
We propose models for the joint distribution of two modalities for network flow volumes. While these models are motivated by computer network applications, the underlying structural assumptions are more generally applicable. In the case of computer network flow volumes, this corresponds to joint modeling for packet and byte volumes and enables computer network tomography, whose goal is to estimate characteristics of source-destination flows based on aggregate link measurements. Network tomography is a prototypical example of a linear inverse problem on graphs. We introduce two generative models for the relation between packet and byte volumes, establish identifiability of their parameters, and discuss different estimating procedures. The proposed estimators of the flow characteristics are evaluated using both simulated and emulated data. Finally, the proposed models allow us to estimate parameters of the packet size distribution, thus providing additional insights into the composition of network traffic.
Keywords :
computer networks; telecommunication traffic; aggregate link measurements; byte volumes; computer network applications; computer network flow volumes; computer network tomography; dual modality data; joint distribution; linear inverse problem; network traffic; packet size distribution; packet volumes; source-destination flows; structural models; Aggregates; Computational modeling; Computer networks; Data models; Routing; Tomography; Volume measurement; Compound model; computer networks; identifiability; inverse problem; packet size distribution; tomography; traffic matrix estimation;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2011.2158474
Filename :
5961848
Link To Document :
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