DocumentCode
1288418
Title
On the Effectiveness of an Opportunistic Traffic Management System for Vehicular Networks
Author
Leontiadis, Ilias ; Marfia, Gustavo ; Mack, David ; Pau, Giovanni ; Mascolo, Cecilia ; Gerla, Mario
Author_Institution
Comput. Lab., Univ. of Cambridge, Cambridge, UK
Volume
12
Issue
4
fYear
2011
Firstpage
1537
Lastpage
1548
Abstract
Road congestion results in a huge waste of time and productivity for millions of people. A possible way to deal with this problem is to have transportation authorities distribute traffic information to drivers, which, in turn, can decide (or be aided by a navigator) to route around congested areas. Such traffic information can be gathered by relying on static sensors placed at specific road locations (e.g., induction loops and video cameras) or by having single vehicles report their location, speed, and travel time. While the former approach has been widely exploited, the latter has come about only more recently; consequently, its potential is less understood. For this reason, in this paper, we study a realistic test case that allows the evaluation of the effectiveness of such a solution. As part of this process, (a) we designed a system that allows vehicles to crowd-source traffic information in an ad hoc manner, allowing them to dynamically reroute based on individually collected traffic information; (b) we implemented a realistic network-mobility simulator that allowed us to evaluate such a model; and (c) we performed a case study that evaluates whether such a decentralized system can help drivers to minimize trip times, which is the main focus of this paper. This study is based on traffic survey data from Portland, OR, and our results indicate that such navigation systems can indeed greatly improve traffic flow. Finally, to test the feasibility of our approach, we implemented our system and ran some real experiments at UCLA´s C-Vet test bed.
Keywords
automated highways; mobility management (mobile radio); navigation; telecommunication network routing; traffic engineering computing; vehicular ad hoc networks; Portland; UCLA C-Vet test bed; VANET; intelligent transportation system technologies; navigation systems; opportunistic traffic management system; realistic network-mobility simulator; road congestion; static sensors; traffic information distribution; transportation authorities; vehicular ad hoc networks; Ad hoc networks; Navigation; Routing; Traffic control; Urban areas; Wireless communication; Ad hoc; intelligent transportation system (ITS); realistic traffic flow simulation; vehicular ad hoc networks (VANET); wireless communication;
fLanguage
English
Journal_Title
Intelligent Transportation Systems, IEEE Transactions on
Publisher
ieee
ISSN
1524-9050
Type
jour
DOI
10.1109/TITS.2011.2161469
Filename
5970119
Link To Document