Title
TSF: Trajectory-Based Statistical Forwarding for Infrastructure-to-Vehicle Data Delivery in Vehicular Networks
Abstract
This paper proposes a data forwarding scheme called Trajectory-based Statistical Forwarding (TSF), tailored for the data delivery from infrastructure nodes (e.g., Internet access points) to moving vehicles in vehicular networks. To our knowledge, this paper presents the first attempt to investigate how to effectively utilize the packet destination vehicle's trajectory for such an infrastructure-to-vehicle data delivery. This data delivery is performed through the computation of a target point based on the destination vehicle's trajectory that is an optimal rendezvous point of the packet and the destination vehicle. TSF forwards packets over multi-hop to a selected target point where the vehicle is expected to pass by. Such a target point is selected optimally to minimize the packet delivery delay while satisfying the required packet delivery probability. The optimality is achieved analytically by utilizing the packet's delivery delay distribution and the destination vehicle's travel delay distribution. Through theoretical analysis and extensive simulation, it is shown that our design provides an efficient data forwarding under a variety of vehicular traffic conditions.
Year
DOI
Venue
2010
10.1109/ICDCS.2010.24
ICDCS
Keywords
Field
DocType
destination vehicle,travel delay distribution,mobile communication,data delivery,trajectory,trajectory-based statistical forwarding,packet destination vehicle,vehicle,infrastructure-to-vehicle data delivery,data forwarding scheme,statistical analysis,data forwarding,infrastructure nodes,target point,required packet delivery probability,packet delivery delay,infrastructure,delivery delay distribution,vehicular networks,efficient data forwarding,distribution,packet delivery probability,delay,probability,computational modeling,global positioning system,navigation,disruption tolerant networking,satisfiability,distributed computing,ad hoc networks,internet access
Delay-tolerant networking,Computer science,Network packet,Computer network,Rendezvous,Wireless ad hoc network,Internet access,Mobile telephony,Vehicular ad hoc network,Trajectory
Conference
ISSN
ISBN
Citations 
1063-6927
978-1-4244-7261-1
44
PageRank 
References 
Authors
1.62
15
5
Name
Order
Citations
PageRank
Jaehoon Jeong138734.96
Shuo Guo252521.95
Yu Gu 000432158127.59
Tian He46869447.17
David H. C. Du5105290.79