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  4. Throughput and Delay Performance of IEEE 802.11e Enhanced Distributed Channel Access (EDCA) under Saturation Condition
 
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Throughput and Delay Performance of IEEE 802.11e Enhanced Distributed Channel Access (EDCA) under Saturation Condition

Journal
IEEE Transactions on Wireless Communications
Journal Volume
6
Journal Issue
1
Pages
136-145
Date Issued
2007-01
Author(s)
Ching-Ling Huang
WANJIUN LIAO  
DOI
10.1109/TWC.2007.04796
URI
http://scholars.lib.ntu.edu.tw/handle/123456789/333769
https://www.scopus.com/inward/record.uri?eid=2-s2.0-33947590655&doi=10.1109%2fTWC.2007.04796&partnerID=40&md5=84cffee03025282280dbbb15b6d144f1
Abstract
In this paper, we analyze the saturation performance of IEEE 802.11e Enhanced Distributed Channel Access (EDCA), which provides contention-based differentiated channel access for frames of different priorities in wireless LANs. With EDAC, Quality of Service (QoS) support is provided with up to four access categories (ACs) in each station. Each AC behaves as an independent backoff entity. The priority among ACs is then determined by AC-specific parameters, called the EDCA parameter set. The behavior of the backoff entity of each AC is modeled as a two-state Markov chain, which is extended from Bianchi's model to capture the features of EDCA. The differences of our model from existing work for 802.11e EDCA include: (i) virtual collisions among different ACs in an EDCA station are modeled, thus more accurately capturing the behavior of EDCA; (ii) the influence of using different arbitrary inter-frame spaces (AIES) for different ACs on saturation performance are considered; (iii) delay and delay jitter are derived, in addition to saturation throughput. The analytical model is validated via ns-2 simulations. The results show that our analytical model can accurately describe the behavior of IEEE 802.11e EDCA. © 2007 IEEE.
Subjects
Delay; EDCA; IEEE 802.11e; Saturation performance; Throughput
Other Subjects
Arbitrary inter-frame spaces (AIES); Enhanced Distributed Channel Access (EDCA); Saturation performance; Computer simulation; Jitter; Mathematical models; Quality of service; Throughput; Wireless local area networks (WLAN); Access control
Type
journal article

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