Abstract
The vehicular-adhocnetwork (adhocNet) termed to be prominent way of information transfer using vehicles plays a significant role in the development of the intelligent and safe transportation, to avoid the unwanted causalities. They provide a more comfortable way of driving and travelling; by providing the complete details entailed for the travel, utilizing the nearby vehicles and the roadside unit. But due to certain security issues arising in the information transmission by the conventional methods of the vehicular- adhocNet, the conventional method of vehicular- adhocNet seems to be inefficient. So the paper proposes a modified vehicular- adhocNet that replaces the cloud computing in the place of the road side unit to provide a enhance security in the information transmission, thus improving the performance of the vehicular- adhocNet as a whole. The performance evaluation of the proposed method using the NS-2 on terms of the improve security, delay and the throughput proves its significance.
References
Yousefi, Saleh, Mahmoud Siadat Mousavi, and Mahmood Fathy. "Vehicular ad hoc networks (VANETs): challenges and perspectives." In 2006 6th International Conference on ITS Telecommunications, pp. 761-766. IEEE, 2006.
Zeadally, Sherali, Ray Hunt, Yuh-Shyan Chen, Angela Irwin, and Aamir Hassan. "Vehicular ad hoc networks (VANETS): status, results, and challenges." Telecommunication Systems 50, no. 4 (2012): 217-241.
Hartenstein, Hannes, and L. P. Laberteaux. "A tutorial survey on vehicular ad hoc networks." IEEE Communications magazine 46, no. 6 (2008): 164-171.
Li, Fan, and Yu Wang. "Routing in vehicular ad hoc networks: A survey." IEEE Vehicular technology magazine 2, no. 2 (2007): 12-22.
Al-Sultan, Saif, Moath M. Al-Doori, Ali H. Al-Bayatti, and Hussien Zedan. "A comprehensive survey on vehicular ad hoc network." Journal of network and computer applications 37 (2014): 380-392.
Martinez, Francisco J., Chai Keong Toh, Juan‐Carlos Cano, Carlos T. Calafate, and Pietro Manzoni. "A survey and comparative study of simulators for vehicular ad hoc networks (VANETs)." Wireless Communications and Mobile Computing 11, no. 7 (2011): 813-828.
Eze, Elias C., Si-Jing Zhang, En-Jie Liu, and Joy C. Eze. "Advances in vehicular ad-hoc networks (VANETs): Challenges and road-map for future development." International Journal of Automation and Computing 13, no. 1 (2016): 1-18.
Bitam, Salim, Abdelhamid Mellouk, and Sherali Zeadally. "VANET-cloud: a generic cloud computing model for vehicular Ad Hoc networks." IEEE Wireless Communications 22, no. 1 (2015): 96-102.
He, Debiao, Sherali Zeadally, Baowen Xu, and Xinyi Huang. "An efficient identity-based conditional privacy-preserving authentication scheme for vehicular ad hoc networks." IEEE Transactions on Information Forensics and Security 10, no. 12 (2015): 2681-2691.
Abdelgadir, Mayada, Rashid A. Saeed, and Abuagla Babiker. "Mobility routing model for vehicular Ad-Hoc networks (VANETS), smart city scenarios." Vehicular Communications 9 (2017): 154-161.
Contreras-Castillo, Juan, Sherali Zeadally, and Juan Antonio Guerrero Ibañez. "Solving vehicular ad hoc network challenges with big data solutions." IET Networks 5, no. 4 (2016): 81-84.
Hasrouny, Hamssa, Abed Ellatif Samhat, Carole Bassil, and Anis Laouiti. "VANet security challenges and solutions: A survey." Vehicular Communications 7 (2017): 7-20.
Samara, Ghassan, and Yousef Al-Raba'nah. "Security Issues in Vehicular Ad Hoc Networks (VANET): a survey." arXiv preprint arXiv:1712.04263 (2017).
Hahn, Dalton A., Arslan Munir, and Vahid Behzadan. "Security and Privacy Issues in Intelligent Transportation Systems: Classification and Challenges." IEEE Intelligent Transportation Systems Magazine (2019).
