DocumentCode
1303381
Title
Beaconing as a service: a novel service-oriented beaconing strategy for vehicular ad hoc networks
Author
Lasowski, Robert ; Linnhoff-Popien, Claudia
Author_Institution
Univ. of Munich, Munich, Germany
Volume
50
Issue
10
fYear
2012
fDate
10/1/2012 12:00:00 AM
Firstpage
98
Lastpage
105
Abstract
Vehicular ad hoc networks are designed to increase traffic safety by enabling fast reactions of drivers in critical situations. Vehicles exchange beacon messages about their current state and position using wireless communication to establish a certain level of awareness. Based on the received information, the collision probability with neighboring vehicles can be calculated. To calculate a collision probability accurately, highly up-to-date knowledge about the movement of potential collision partners is required. Due to the dynamic network topology, vehicles are supposed to send periodic beacons at an increased transmit rate. However, as wireless communication suffers from packet interference issues in saturated communication channels, an increased beacon rate also raises the interference probability. Thus, decreasing interference by increasing the awareness level seems contradictory. To overcome this issue, we introduce our beaconing as a service (BaaS) approach, which follows two core aspects: first, controlling the beacon rate intelligently with respect to the real benefit of a message transmission (e.g., when a vehicle detects a potential collision situation); and second, utilizing the overall communication bandwidth, which is divided into several communication channels. In this sense BaaS specifies a context-aware request/response beaconing strategy utilizing multiple channels simultaneously.
Keywords
telecommunication channels; telecommunication traffic; vehicular ad hoc networks; BaaS approach; beaconing as a service; collision probability; context-aware request; dynamic network topology; fast reactions; message transmission; multiple channels; packet interference; potential collision partners; potential collision situation; response beaconing strategy; service-oriented beaconing strategy; traffic safety; up-to-date knowledge; vehicles exchange beacon messages; vehicular ad hoc networks; wireless communication; Ad hoc networks; Intelligent vehicles; Interference; Probability; Safety; Traffic control; Vehicle safety;
fLanguage
English
Journal_Title
Communications Magazine, IEEE
Publisher
ieee
ISSN
0163-6804
Type
jour
DOI
10.1109/MCOM.2012.6316782
Filename
6316782
Link To Document