DocumentCode :
84
Title :
A Physical-Layer Location Privacy-Preserving Scheme for Mobile Public Hotspots in NEMO-Based VANETs
Author :
Taha, S. ; Xuemin Shen
Author_Institution :
Dept. of Inf. Technol., Cairo Univ., Cairo, Egypt
Volume :
14
Issue :
4
fYear :
2013
fDate :
Dec. 2013
Firstpage :
1665
Lastpage :
1680
Abstract :
A network mobility (NEMO)-based vehicular ad hoc network (VANET) is a new approach to integrate the NEMO protocol with VANETs. This integration supports communications between roadside units (RSUs) and vehicles and provides Internet access through public hotspots located inside public transportation systems, such as buses, trains, and shuttles. Passengers inside these public transportation systems enjoy full Internet access by using different mobile network nodes (MNNs), such as cell phones and personal digital assistants. However, due to the open nature of wireless network environments, physical-layer attackers can easily localize the MNNs by measuring their received signal strength (RSS) through positioning schemes such as the triangulation scheme. In this paper, we modify obfuscation, i.e., concealment, and power variability ideas and propose a new physical-layer location privacy scheme, i.e., the fake point-cluster-based scheme, to prevent attackers from localizing users inside NEMO-based VANET hotspots. The proposed scheme involves fake-point- and cluster-based subschemes, and its goal is to confuse the attackers by increasing the estimation errors of their RSSs measurements and, hence, preserving MNNs´ location privacy. Using correctness, accuracy, and certainty metrics, we show that the fake point-cluster-based scheme achieves higher MNN´s location privacy when the number of network grid points in the hotspot decreases. In addition, our extensive simulations show that the fake point-cluster-based scheme achieves 23% and 37% decreases in the average sender´s power and the MNN-AP route path length, respectively, compared with the fake-point subscheme.
Keywords :
Internet; computer network security; data privacy; mobility management (mobile radio); protocols; vehicular ad hoc networks; MNN location privacy; MNN-AP route path length; NEMO-based VANET hotspots; RSS measurement; RSU; buses; cell phones; cluster-based subscheme; concealment idea; estimation errors; fake point-cluster-based scheme; mobile network nodes; mobile public hotspots; network grid points; network mobility-based vehicular ad hoc network; obfuscation modification; personal digital assistants; physical-layer attackers; physical-layer location privacy-preserving scheme; positioning scheme; power variability; public transportation systems; received signal strength; shuttles; trains; triangulation scheme; wireless network environment; Estimation error; Mobile communication; Physical layer; Privacy; Vehicular ad hoc networks; NEMO security; Network mobility (NEMO)-based VANET; physical-layer location privacy; physical-layer security; wireless position estimation attacks;
fLanguage :
English
Journal_Title :
Intelligent Transportation Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1524-9050
Type :
jour
DOI :
10.1109/TITS.2013.2265311
Filename :
6542695
Link To Document :
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