An Accurate Analytical Model for 802.11e EDCA under Different Traffic Conditions with Contention-Free Bursting
Extensive research addressing IEEE 802.11e enhanced distributed channel access (EDCA) performance analysis, by means of analytical models, exist in the literature. Unfortunately, the currently proposed models, even though numerous, do not reach this accuracy due to the great number of simplification...
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doaj-1f2ec81030ff42be9512e5eae4a533b22020-11-24T22:18:44ZengHindawi LimitedJournal of Computer Networks and Communications2090-71412090-715X2011-01-01201110.1155/2011/136585136585An Accurate Analytical Model for 802.11e EDCA under Different Traffic Conditions with Contention-Free BurstingNada Chendeb Taher0Yacine Ghamri-Doudane1Bachar El Hassan2Nazim Agoulmine3ENSIIE, 1 Square de la Résistance, 91025 Evry Cedex, FranceENSIIE, 1 Square de la Résistance, 91025 Evry Cedex, FranceFaculty of Engineering, Lebanese University, El Arz street, El Kobbeh, Tripoli, LebanonUniversity of Evry val d'Essonne, Boulevard François Mitterrand, 91025 Evry Cedex, FranceExtensive research addressing IEEE 802.11e enhanced distributed channel access (EDCA) performance analysis, by means of analytical models, exist in the literature. Unfortunately, the currently proposed models, even though numerous, do not reach this accuracy due to the great number of simplifications that have been done. Particularly, none of these models considers the 802.11e contention free burst (CFB) mode which allows a given station to transmit a burst of frames without contention during a given transmission opportunity limit (TXOPLimit) time interval. Despite its influence on the global performance, TXOPLimit is ignored in almost all existing models. To fill in this gap, we develop in this paper a new and complete analytical model that (i) reflects the correct functioning of EDCA, (ii) includes all the 802.11e EDCA differentiation parameters, (iii) takes into account all the features of the protocol, and (iv) can be applied to all network conditions, going from nonsaturation to saturation conditions. Additionally, this model is developed in order to be used in admission control procedure, so it was designed to have a low complexity and an acceptable response time. The proposed model is validated by means of both calculations and extensive simulations.http://dx.doi.org/10.1155/2011/136585 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Nada Chendeb Taher Yacine Ghamri-Doudane Bachar El Hassan Nazim Agoulmine |
spellingShingle |
Nada Chendeb Taher Yacine Ghamri-Doudane Bachar El Hassan Nazim Agoulmine An Accurate Analytical Model for 802.11e EDCA under Different Traffic Conditions with Contention-Free Bursting Journal of Computer Networks and Communications |
author_facet |
Nada Chendeb Taher Yacine Ghamri-Doudane Bachar El Hassan Nazim Agoulmine |
author_sort |
Nada Chendeb Taher |
title |
An Accurate Analytical Model for 802.11e EDCA under Different Traffic Conditions with Contention-Free Bursting |
title_short |
An Accurate Analytical Model for 802.11e EDCA under Different Traffic Conditions with Contention-Free Bursting |
title_full |
An Accurate Analytical Model for 802.11e EDCA under Different Traffic Conditions with Contention-Free Bursting |
title_fullStr |
An Accurate Analytical Model for 802.11e EDCA under Different Traffic Conditions with Contention-Free Bursting |
title_full_unstemmed |
An Accurate Analytical Model for 802.11e EDCA under Different Traffic Conditions with Contention-Free Bursting |
title_sort |
accurate analytical model for 802.11e edca under different traffic conditions with contention-free bursting |
publisher |
Hindawi Limited |
series |
Journal of Computer Networks and Communications |
issn |
2090-7141 2090-715X |
publishDate |
2011-01-01 |
description |
Extensive research addressing IEEE 802.11e enhanced distributed channel access (EDCA) performance analysis, by means of analytical models, exist in the literature. Unfortunately, the currently proposed models, even though numerous, do not reach this accuracy due to the great number of simplifications that have been done. Particularly, none of these models considers the 802.11e contention free burst (CFB) mode which allows a given station to transmit a burst of frames without contention during a given transmission opportunity limit (TXOPLimit) time interval. Despite its influence on the global performance, TXOPLimit is ignored in almost all existing models. To fill in this gap, we develop in this paper a new and complete analytical model that (i) reflects the correct functioning of EDCA, (ii) includes all the 802.11e EDCA differentiation parameters, (iii) takes into account all the features of the protocol, and (iv) can be applied to all network conditions, going from nonsaturation to saturation conditions. Additionally, this model is developed in order to be used in admission control procedure, so it was designed to have a low complexity and an acceptable response time. The proposed model is validated by means of both calculations and extensive simulations. |
url |
http://dx.doi.org/10.1155/2011/136585 |
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