Title :
A Dynamic Privacy-Preserving Key Management Scheme for Location-Based Services in VANETs
Author :
Lu, Rongxing ; Lin, Xiaodong ; Liang, Xiaohui ; Shen, Xuemin
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Waterloo, Waterloo, ON, Canada
fDate :
3/1/2012 12:00:00 AM
Abstract :
In this paper, to achieve a vehicle user´s privacy preservation while improving the key update efficiency of location-based services (LBSs) in vehicular ad hoc networks (VANETs), we propose a dynamic privacy-preserving key management scheme called DIKE. Specifically, in the proposed DIKE scheme, we first introduce a privacy-preserving authentication technique that not only provides the vehicle user´s anonymous authentication but enables double-registration detection as well. We then present efficient LBS session key update procedures: 1) We divide the session of an LBS into several time slots so that each time slot holds a different session key; when no vehicle user departs from the service session, each joined user can use a one-way hash function to autonomously update the new session key for achieving forward secrecy. 2) We also integrate a novel dynamic threshold technique in traditional vehicle-to-vehicle (V-2-V) and vehicle-to-infrastructure (V-2-I) communications to achieve the session key´s backward secrecy, i.e., when a vehicle user departs from the service session, more than a threshold number of joined users can cooperatively update the new session key. Performance evaluations via extensive simulations demonstrate the efficiency and effectiveness of the proposed DIKE scheme in terms of low key update delay and fast key update ratio.
Keywords :
message authentication; mobile computing; mobility management (mobile radio); performance evaluation; public key cryptography; telecommunication security; vehicular ad hoc networks; DIKE scheme; LBS session key update procedures; V-2-I communication; V-2-V communication; VANET; backward secrecy; double-registration detection; dynamic privacy-preserving key management scheme; dynamic threshold technique; forward secrecy; key update efficiency; location-based services; one-way hash function; performance evaluations; privacy-preserving authentication technique; service session; traditional vehicle-to-vehicle communication; vehicle user anonymous authentication; vehicle user privacy preservation; vehicle-to-infrastructure communication; vehicular ad hoc networks; Authentication; Levee; Privacy; Roads; Vehicle dynamics; Vehicles; Dynamic key management; privacy preservation; secure location-based services (LBSs); vehicular ad hoc networks (VANETs);
Journal_Title :
Intelligent Transportation Systems, IEEE Transactions on
DOI :
10.1109/TITS.2011.2164068