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A new adapted back-off scheme for broadcasting on IEEE 1609.4 control channel in VANET

  • A. Ahmad
  • , M. Doughan
  • , I. Mougharbel
  • , M. Marot
  • CNRS UMR 5157 SAMOVAR
  • Lebanese University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

In this paper, we propose a novel MAC scheme for broadcasting in IEEE 802.11p/WAVE standard during the CCH periods. We address two problems which lead to the same undesired result: the degradation in control channel performance. The first problem is related to the congestion control and the challenge is viewed in the random backoff mechanism to be adapted for broadcasting messages. It has been evident that the exponential back-off is not efficient in broadcast and where there are beacons. The problem becomes more challenging when these beacons have an expiry time and they are dropped once this time is reached before transmission. When the vehicle density is high, the probability to have two or more vehicles having the same random back-off increases and results in an increase of collision probability. One solution is in incrementing the Contention Window (CW) but if the CW is increased, the waiting time before transmitting increases and it results in the rise of the packet drop rate due to expiry time. The absence of acknowledgement for broadcast messages makes the CW adaptation very difficult. Our proposed scheme addresses this problem.

Original languageEnglish
Title of host publication2012 the 11th Annual Mediterranean Ad Hoc Networking Workshop, Med-Hoc-Net 2012
Pages9-15
Number of pages7
DOIs
Publication statusPublished - 5 Oct 2012
Event11th Annual Mediterranean Ad Hoc Networking Workshop, Med-Hoc-Net 2012 - Ayia Napa, Cyprus
Duration: 19 Jun 201222 Jun 2012

Publication series

Name2012 the 11th Annual Mediterranean Ad Hoc Networking Workshop, Med-Hoc-Net 2012

Conference

Conference11th Annual Mediterranean Ad Hoc Networking Workshop, Med-Hoc-Net 2012
Country/TerritoryCyprus
CityAyia Napa
Period19/06/1222/06/12

Keywords

  • Back-off
  • Broadcast
  • CCH
  • Collision
  • IEEE 802.11p/1609.4
  • VANET

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