| Literature DB >> 34300674 |
Mohammed Abdulhakim Al-Absi1, Ahmed Abdulhakim Al-Absi2, Rui Fu3, Ki-Hwan Kim4, Young-Sil Lee4, Byung-Gook Lee5, Sang-Gon Lee5, Hoon-Jae Lee5.
Abstract
The evolution of the internet has led to the growth of smart application requirements on the go in the vehicular ad hoc network (VANET). VANET enables vehicles to communicate smartly among themselves wirelessly. Increasing usage of wireless technology induces many security vulnerabilities. Therefore, effective security and authentication mechanism is needed to prevent an intruder. However, authentication may breach user privacy such as location or identity. Cryptography-based approach aids in preserving the privacy of the user. However, the existing security models incur communication and key management overhead since they are designed considering a third-party server. To overcome the research issue, this work presents an efficient security model namely secure performance enriched channel allocation (S-PECA) by using commutative RSA. This work further presents the commutative property of the proposed security scheme. Experiments conducted to evaluate the performance of the proposed S-PECA over state-of-the-art models show significant improvement. The outcome shows that S-PECA minimizes collision and maximizes system throughput considering different radio propagation environments.Entities:
Keywords: DSRC; MAC; V2V; authentication; privacy; security
Year: 2021 PMID: 34300674 DOI: 10.3390/s21144935
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576