Open Access Open Access  Restricted Access Subscription Access

Technical Note on Secure Service Access in VANET using PBKDF Algorithm


Affiliations
1 Information and Communication Engg., Anna University, Chennai, India
2 Dept. Information Technology, Madras Institute of Technology, Anna University, Chennai, India
3 Electronics and Communication Engg., Anna University, Tindivanam, India
 

   Subscribe/Renew Journal


Vehicular networks and their applications have gained great attention to the research community and vehicle industry in past few years. The applications in Vehicular Ad-hoc Networks (VANETs) are growing rapidly. The two main application classes have lately gained popularity such as secured and non secured applications. In this paper, we focus on security in VANETs using Packet Bit Key Data Function (PBKDF) Algorithm. The performance of proposed algorithm is assessed using Simulation of Urban Mobility (SUMO) coupled with V2X simulation runtime infrastructure.

Keywords

Vehicular Ad-Hoc Networks, Security, Service Access, Performance.
User
Subscription Login to verify subscription
Notifications
Font Size

  • P. Dharanyadevi and K. Venkatalakshmi. 2015. Potent gateway selection algorithm for integrated 3g-vmesh milieu, World Applied Sciences J., 33(7), 1228-1233.
  • P. Dharanyadevi and K. Venkatalakshmi. 2015. Optimized heuristic buffer-based routing for vmesh milieu, Australian J. Basic and Applied Sciences, 9(11), 386-390.
  • P. Dharanyadevi and K. Venkatalakshmi. 2014. Reliable and scalable routing protocol (RSRP) for multimedia data transmission in vehicular mesh milieu, Int. J. Applied Engg. Research, 9(23), 19935-19944.
  • P. Papadimitratos, A. Kung, J. Hubaux and F. Kargl. 2006. Privacy and Identity Management for Vehicular Communication System, Proc. Workshop on Standards for Privacy in User-Centric Identity Mgmnt., Zurich.
  • S. Capkun, J. Hubaux and M. Jakobsson. 2004. Secure and Privacy-Preserving Communication in Hybrid Ad-hoc Networks, EPFL-IC Technical Report.
  • A. Mishra and K. Nadkarni. 2002. Security in mobile ad-hoc networks, The Handbook of Wireless Networks (Edited by M. Ilyas), Chapter 3.
  • D. Zhou. 2003. Security issues in ad hoc networks, The Handbook of Wireless Networks (Edited by M. Ilyas), Chapter 32.
  • A. Aijaz, B. Bochow and F. Dotzer. 2006. Attacks on inter vehicle communication systems-an analysis, Proc. 3rd Int. Workshop on Intelligent Transportation, Hamburg, Germany.
  • J. Blum and A. Eskandarian. 2004. The threat of intelligent collisions, IT Professional, 6(1), 24-29.
  • M. Raya, P. Papadimitratos and J. Hubaux. 2006. Securing Vehicular Communications, EPFL.
  • F. Dotzer. 2005. Privacy issues in VANET, Proc. Workshop on Privacy Enhancing Technologies, Croatia.
  • K. Abrougui, A. Boukerche, R.W.N. Pazzi. 2011. Design and evaluation of context-aware and location-based service discovery protocols for vehicular networks, IEEE Trans. Intelligent Transportation Systems, 12(3), 717-735. http://dx.doi.org/10.1109/TITS.2011.2159377

Abstract Views: 237

PDF Views: 139




  • Technical Note on Secure Service Access in VANET using PBKDF Algorithm

Abstract Views: 237  |  PDF Views: 139

Authors

P. Dharanyadevi
Information and Communication Engg., Anna University, Chennai, India
T. Divyasree
Dept. Information Technology, Madras Institute of Technology, Anna University, Chennai, India
S. P. Sharmila
Dept. Information Technology, Madras Institute of Technology, Anna University, Chennai, India
K. Venkatalakshmi
Electronics and Communication Engg., Anna University, Tindivanam, India

Abstract


Vehicular networks and their applications have gained great attention to the research community and vehicle industry in past few years. The applications in Vehicular Ad-hoc Networks (VANETs) are growing rapidly. The two main application classes have lately gained popularity such as secured and non secured applications. In this paper, we focus on security in VANETs using Packet Bit Key Data Function (PBKDF) Algorithm. The performance of proposed algorithm is assessed using Simulation of Urban Mobility (SUMO) coupled with V2X simulation runtime infrastructure.

Keywords


Vehicular Ad-Hoc Networks, Security, Service Access, Performance.

References





DOI: https://doi.org/10.4273/ijvss.8.2.04