scispace - formally typeset
Journal ArticleDOI

Performance analysis of IEEE 802.11 MAC protocols in wireless LANs

TLDR
It is demonstrated that the exponential distribution is a good approximation model for the MAC layer service time for the queueing analysis, and the presented queueing models can accurately match the simulation data obtained from ns-2 when the arrival process at MAC layer is Poissonian.
Abstract
Summary IEEE 802.11 MAC protocol is the de facto standard for wireless local area networks (LANs), and has also been implemented in many network simulation packages for wireless multi-hop ad hoc networks. However, it is well known that, as the number of active stations increases, the performance of IEEE 802.11 MAC in terms of delay and throughput degrades dramatically, especially when each station’s load approaches its saturation state. To explore the inherent problems in this protocol, it is important to characterize the probability distribution of the packet service time at the MAC layer. In this paper, by modeling the exponential backoff process as a Markov chain, we can use the signal transfer function of the generalized state transition diagram to derive an approximate probability distribution of the MAC layer service time. We then present the discrete probability distribution for MAC layer packet service time, which is shown to accurately match the simulation data from network simulations. Based on the probability model for the MAC layer service time, we can analyze a few performance metrics of the wireless LAN and give better explanation to the performance degradation in delay and throughput at various traffic loads. Furthermore, we demonstrate that the exponential distribution is a good approximation model for the MAC layer service time for the queueing analysis, and the presented queueing models can accurately match the simulation data obtained from ns-2 when the arrival process at MAC layer is Poissonian. Copyright # 2004 John Wiley & Sons, Ltd.

read more

Content maybe subject to copyright    Report

Citations
More filters
Journal ArticleDOI

Performance evaluation of IEEE 802.11-based wireless LANs under finite-load conditions

TL;DR: In this article, the authors propose a new interpretation for the saturation behavior reported in the literature, relates the critical point (inflection point) to the various system and traffic parameters and analytically explains why the RTS/CTS mechanism is favorable for certain offered loads.
Book ChapterDOI

802.11 buffers: when bigger is not better?

TL;DR: It is found that increased buffering throughout an 802.11 network will not only incur delay, but may actually increase the packet loss experienced by stations.
Journal ArticleDOI

An iterative analysis of single-hop B-MAC networks under Poisson traffic

TL;DR: The model considers important B-MAC parameters such as the sleep cycle, the two stage backoff mechanism, and the extended preamble, and calculates the service delay of an arriving packet and the energy consumption by an iterative method.
Proceedings ArticleDOI

Online learning in wireless networks via directed graph lifting transform

TL;DR: A novel framework for the online learning of cost-to-go functions using a local wavelet transform is presented, which allows a considerable reduction in the number of observations needed for accurate estimation.
Proceedings ArticleDOI

Analysis of the Channel Access Mechanism in IEEE 802.11 Wireless Local Area Networks

TL;DR: A performance analysis of IEEE 802.11 channel access mechanism captures the details of the Distributed Function Coordination (DCF), such as the contention window size, inter-frame spacing, and packet exchange sequence, and obtains the throughput for such a network with multiple number of stations.
References
More filters
Journal ArticleDOI

Performance analysis of the IEEE 802.11 distributed coordination function

TL;DR: In this paper, a simple but nevertheless extremely accurate, analytical model to compute the 802.11 DCF throughput, in the assumption of finite number of terminals and ideal channel conditions, is presented.
Proceedings ArticleDOI

A performance comparison of multi-hop wireless ad hoc network routing protocols

TL;DR: The results of a derailed packet-levelsimulationcomparing fourmulti-hopwirelessad hoc networkroutingprotocols, which cover a range of designchoices: DSDV,TORA, DSR and AODV are presented.
Book

Fundamentals of queueing theory

TL;DR: The Fundamentals of Queueing Theory, Fourth Edition as discussed by the authors provides a comprehensive overview of simple and more advanced queuing models, with a self-contained presentation of key concepts and formulae.
Proceedings ArticleDOI

Performance comparison of two on-demand routing protocols for ad hoc networks

TL;DR: It is demonstrated that even though DSR and AODV share a similar on-demand behavior the differences in the protocol mechanics can lead to significant performance differentials.
Journal ArticleDOI

Performance comparison of two on-demand routing protocols for ad hoc networks

TL;DR: It is demonstrated that even though DSR and AODV share similar on-demand behavior, the differences in the protocol mechanics can lead to significant performance differentials.
Related Papers (5)