DocumentCode
1911871
Title
Towards an Efficient Service Level Agreement Assessment
Author
Serral-Gracià, René ; Labit, Yann ; Domingo-Pascual, Jordi ; Owezarski, Philippe
Author_Institution
Adv. Broadband Commun. Centre, Tech. Univ. of Catalunya (UPC), Barcelona, Spain
fYear
2009
fDate
19-25 April 2009
Firstpage
2581
Lastpage
2585
Abstract
On-line end-to-end Service Level Agreement (SLA) monitoring is of key importance nowadays. For this purpose, past recent researches focused on measuring (when possible) or estimating (most of the times) network QoS or performance parameters. Up to now, attempts to provide accurate techniques for estimating such parameters have failed. In addition, live reporting of the estimated network status requires a huge amount of resources, and lead to unscalable systems. The originality of the contribution presented in this paper, relies on the statement that the accurate estimation of network QoS parameters is absolutely not required in most cases: specifically it is sufficient to be aware of service disruptions, i.e. when the QoS provided by the network collapses. For this purpose, we propose an algorithm for disruption detection of network services. The proposed solution is based on the use of the well-known Kullback-Leibler Divergence algorithm. More specifically, we work on simple to measure time series, i.e. received inter-packet arrival times. In addition of efficiently detecting network QoS disruptions, the algorithm, also drastically reduces the required resources, and the overhead produced by the traffic collection for scalable SLA monitoring systems. The validity of the proposal is verified both in terms of accuracy and consumed resources in a real testbed, using different traffic profiles.
Keywords
quality of service; telecommunication network management; time series; Kullback-Leibler divergence algorithm; efficient service level agreement assessment; inter-packet arrival times; network QoS parameters; network collapses; network services; online end-to-end service level agreement monitoring; time series; traffic collection; unscalable systems; Broadband communication; Communications Society; Computer networks; Delay estimation; Proposals; Quality of service; State estimation; Telecommunication traffic; Testing; Time measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
INFOCOM 2009, IEEE
Conference_Location
Rio de Janeiro
ISSN
0743-166X
Print_ISBN
978-1-4244-3512-8
Electronic_ISBN
0743-166X
Type
conf
DOI
10.1109/INFCOM.2009.5062191
Filename
5062191
Link To Document