DocumentCode :
68160
Title :
Optimizing Content Dissemination in Vehicular Networks with Radio Heterogeneity
Author :
Joon Ahn ; Sathiamoorthy, Maheswaran ; Krishnamachari, Bhuma ; Fan Bai ; Lin Zhang
Author_Institution :
Ericsson, Inc., San Jose, CA, USA
Volume :
13
Issue :
6
fYear :
2014
fDate :
Jun-14
Firstpage :
1312
Lastpage :
1325
Abstract :
Disseminating shared information to many vehicles could incur significant access fees if it relies only on unicast cellular communications. We consider the problem of efficient content dissemination over a vehicular network, in which vehicles are equipped with two kinds of radios: a high-cost low-bandwidth, long-range cellular radio, and a free high-bandwidth short-range radio. We formulate and solve an optimization problem to maximize content dissemination from the infrastructure to vehicles within a predetermined deadline while minimizing the cost associated with communicating over the cellular connection. We examine numerically the tradeoffs between cost, delay and system utility in the optimum regime. We find that, in the optimum regime, (a) system utility is more sensitive to the cost budget when the allowed delay for the dissemination is not large, (b) the system requires relatively smaller cost budget as more vehicles participate and more delay is allowed, (c) when the cost is very important, it is better not to spread the content if it needs small delay. We also develop a polynomial-time algorithm to obtain the optimal discrete solution needed in practice. Finally, we verify our analysis using real GPS traces of 632 taxis in Beijing, China.
Keywords :
cellular radio; optimisation; polynomials; vehicular ad hoc networks; Beijing; China; access fees; cellular connection; content dissemination; free high-bandwidth short-range radio; high-cost low-bandwidth long-range cellular radio; optimal discrete solution; optimization problem; polynomial-time algorithm; radio heterogeneity; real GPS traces; shared information; system utility; unicast cellular communications; vehicular networks; Delays; Land mobile radio cellular systems; Mathematical model; Mobile computing; Optimization; Vehicles; Analysis; Delay-tolerant networks; analysis; content distribution; vehicular networks;
fLanguage :
English
Journal_Title :
Mobile Computing, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1233
Type :
jour
DOI :
10.1109/TMC.2013.100
Filename :
6573913
Link To Document :
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