DocumentCode :
1762032
Title :
Performance Analysis of the TXOP Sharing Mechanism in the VHT IEEE 802.11ac WLANs
Author :
Yazid, Mohand ; Ksentini, Adlen ; Bouallouche-Medjkoune, Louiza ; Aissani, Djamil
Author_Institution :
Lab. of Modeling & Optimization of Syst. (LaMOS), Univ. of Bejaia, Bejaia, Algeria
Volume :
18
Issue :
9
fYear :
2014
fDate :
Sept. 2014
Firstpage :
1599
Lastpage :
1602
Abstract :
The 802.11ac amendment of the IEEE 802.11 standard, known as a very high-throughput wireless local area network (WLAN), has attracted extensive attention for achieving a maximum transmission rate up to 7 Gb/s. This is mainly possible by adopting the DownLink MultiUser Multiple-Input-Multiple-Output (DL MU-MIMO) technology, which allows multiple frames to be simultaneously transmitted from the access point (AP) to different receivers via multiple spatial streams. To support the DL MU-MIMO technology at medium access control level, a technique called transmission opportunity (TXOP) sharing has been proposed to extend the mandatory TXOP of the WLAN standard. In this letter, we propose an analytical model based on Markov chains to evaluate the performance of an IEEE 802.11ac AP enabling the TXOP sharing mechanism. Based on this model, we are able to derive the achievable throughput of a given access category (AC), namely, voice (VO), video (VI), best effort (BE), and background (BK). The ultimate goal of this letter is to analyze how the TXOP sharing mechanism could improve the utilization of the scarce wireless bandwidth while achieving channel access fairness among the different ACs. Note that the obtained theoretical results are also validated by computer simulation.
Keywords :
MIMO communication; Markov processes; access protocols; wireless LAN; DL MU-MIMO technology; Markov chains; TXOP Sharing Mechanism; VHT IEEE 802.11ac; WLANs; access point; background; best effort category; channel access fairness; downlink multiuser multiple-input-multiple-output; medium access control level; multiple spatial streams; scarce wireless bandwidth utilization; transmission opportunity sharing; video; voice; wireless local area network; Analytical models; Antennas; Gold; IEEE 802.11 Standards; Markov processes; Throughput; Wireless LAN; Markov chains; TXOP sharing mechanism; VHT IEEE 802.11ac WLANs; model validation; modeling; throughput analysis;
fLanguage :
English
Journal_Title :
Communications Letters, IEEE
Publisher :
ieee
ISSN :
1089-7798
Type :
jour
DOI :
10.1109/LCOMM.2014.2337253
Filename :
6857362
Link To Document :
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