DocumentCode :
1145168
Title :
Experimental analysis of broadcast reliability in dense vehicular networks
Author :
Ramachandran, Kishore ; Gruteser, Marco ; Onishi, Ryokichi ; Hikita, Toshiro
Author_Institution :
Rutgers Univ., New Brunswick
Volume :
2
Issue :
4
fYear :
2007
Firstpage :
26
Lastpage :
32
Abstract :
Dedicated short range communications (DSRC) enable novel automotive safety applications such as an extended electronic brake light (EEBL) or intersection collision avoidance (ICA). These applications require reliable wireless communications even in scenarios with very high vehicle density, where these networks are primarily interference-limited. Given the uncertainties associated with current simulation models, particularly their interference models, it is critical to experimentally validate network performance for such scenarios. Towards this goal, we present a systematic, large- scale experimental study of packet delivery rates (PDRs) in a dense environment of 802.11 transmitters. We show that even with 100 transmitters in communication range with a frame size of 128 B and a bit-rate of 6 Mb/s, 1) most receivers can decode over 1500 packets per second (pps) in a saturated network, which corresponds to a PDR of 45% and 2) the mean PDR, for 10 pps per node workload that emulates vehicular safety applications, is about 95%. These results demonstrate that a COTS 802.11 implementation can correctly decode many packets under collision due to physical layer capture (PLC) and can serve as a reference scenario for validation of network simulators.
Keywords :
broadcasting; decoding; mobile communication; telecommunication network reliability; wireless LAN; 802.11 transmitter; automotive safety; broadcast reliability; decoding; dedicated short range communication; dense vehicular network; extended electronic brake light; intersection collision avoidance; network simulator; physical layer capture; wireless communications; Automotive engineering; Broadcasting; Collision avoidance; Decoding; Independent component analysis; Interference; Safety; Telecommunication network reliability; Transmitters; Wireless communication;
fLanguage :
English
Journal_Title :
Vehicular Technology Magazine, IEEE
Publisher :
ieee
ISSN :
1556-6072
Type :
jour
DOI :
10.1109/MVT.2008.917439
Filename :
4498412
Link To Document :
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