Skip Navigation

IEICE Transactions on Communications 2008 E91-B(4):1122-1131; doi:10.1093/ietcom/e91-b.4.1122
This Article
Right arrow Full Text (PDF)
Right arrow References
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Alert me to new issues of the journal
Right arrow Add to My Personal Archive
Right arrow Download to citation manager
Right arrow Request Permissions
Google Scholar
Right arrow Articles by KIM, T. O.
Right arrow Articles by CHOI, B. D.
Social Bookmarking
 Add to CiteULike   Add to Connotea   Add to Del.icio.us  
What's this?

Copyright © 2008 The Institute of Electronics, Information and Communication Engineers

Regular Section -- Papers -- Terrestrial Radio Communications

Performance Analysis of IEEE 802.11 DCF and IEEE 802.11e EDCA in Non-saturation Condition*

Tae Ok KIM1, Kyung Jae KIM1 and Bong Dae CHOI1

1 The authors are with the Department of Mathematics and Telecommunication Mathematics Research Center, Korea University, Seoul, Korea. E-mail: violetgl{at}korea.ac.kr; kimkjae{at}korea.ac.kr; queue{at}korea.ac.kr


   Abstract

We analyze the MAC performance of the IEEE 802.11 DCF and 802.11e EDCA in non-saturation condition where device does not have packets to transmit sometimes. We assume that a flow is not generated while the previous flow is in service and the number of packets in a flow is geometrically distributed. In this paper, we take into account the feature of non-saturation condition in standards: possibility of transmission performed without preceding backoff procedure for the first packet arriving at the idle station. Our approach is to model a stochastic behavior of one station as a discrete time Markov chain. We obtain four performance measures: normalized channel throughput, average packet HoL (head of line) delay, expected time to complete transmission of a flow and packet loss probability. Our results can be used for admission control to find the optimal number of stations with some constraints on these measures.

Key Words: IEEE 802.11e protocol, Markov model, performance evaluation, quality of service (QoS)


Manuscript received May 25, 2007. Manuscript revised November 13, 2007.

* This research is supported by the MIC, under the ITRC support program supervised by the IITA. Bong Dae Choi is corresponding author.


Add to CiteULike CiteULike   Add to Connotea Connotea   Add to Del.icio.us Del.icio.us    What's this?




Disclaimer:
Please note that abstracts for content published before 1996 were created through digital scanning and may therefore not exactly replicate the text of the original print issues. All efforts have been made to ensure accuracy, but the Publisher will not be held responsible for any remaining inaccuracies. If you require any further clarification, please contact our Customer Services Department.