DocumentCode
1970546
Title
A Hidden Markov Model based scheme for efficient and fast dissemination of safety messages in VANETs
Author
Brahmi, Imane Horiya ; Djahel, Soufiene ; Ghamri-Doudane, Yacine
Author_Institution
Ecole Nat. Super. d´Inf. pour l´Ind. et l´Entreprise (ENSIIE), Evry, France
fYear
2012
fDate
3-7 Dec. 2012
Firstpage
177
Lastpage
182
Abstract
Nowadays, Vehicle to Vehicle (V2V) communication is attracting an increasing attention from car manufacturers due to its expected impact in improving driving safety and comfort. IEEE 802.11P is the primary channel access scheme used by vehicles; however it does not provide sufficient spectrum to ensure reliable exchange of safety information. To overcome this issue, many efforts have been devoted to enhance the frequency spectrum utilization efficiency. To this end, the Cognitive Radio (CR) principle has been applied to assist the vehicles to gain extra bandwidth through an opportunistic use of the unused spectrums in their surrounding. In this paper, we focus on safety messages for which we propose an original scheme that makes their exchange among the nearby vehicles more reliable with a significant reduce in their dissemination delay. This improvement is due to the use of a Hidden Markov Model that enables the prediction of the available channels for the subsequent time slots, leading to faster channel allocation for the vehicles. The obtained simulation results confirm the efficiency of our scheme.
Keywords
channel allocation; cognitive radio; driver information systems; frequency allocation; hidden Markov models; road safety; vehicular ad hoc networks; wireless LAN; CR principle; IEEE 802.11P; V2V communication; VANET; car manufacturers; channel allocation; cognitive radio principle; dissemination delay; driving comfort; driving safety; frequency spectrum utilization efficiency; hidden Markov model based scheme; primary channel access scheme; reliable exchange; safety information; safety message dissemination; vehicle to vehicle communication; Hidden Markov Model; IEEE 802.11P; Kalman Filter; Safety Messages; VANETs;
fLanguage
English
Publisher
ieee
Conference_Titel
Global Communications Conference (GLOBECOM), 2012 IEEE
Conference_Location
Anaheim, CA
ISSN
1930-529X
Print_ISBN
978-1-4673-0920-2
Electronic_ISBN
1930-529X
Type
conf
DOI
10.1109/GLOCOM.2012.6503109
Filename
6503109
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