4.8 Article

Fortifying Smart Transportation Security Through Public Blockchain

期刊

IEEE INTERNET OF THINGS JOURNAL
卷 9, 期 17, 页码 16532-16545

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JIOT.2022.3150842

关键词

Security; Blockchains; Servers; Computational modeling; Authentication; Cloud computing; Accidents; Access control and key management; blockchain; intelligent transportation system (ITS); security; vehicular network

资金

  1. Regional Innovation Strategy (RIS) through the National Research Foundation of Korea (NRF) - Ministry of Education (MOE), South Korea [2021RIS-004]
  2. Ripple Centre of Excellence Scheme, CoE in Blockchain, IIIT Hyderabad, India [001/2019]

向作者/读者索取更多资源

Smart vehicles support intelligent transportation system, but face security and privacy issues due to insecure communication. Hence, we propose a secure communication framework based on public blockchain to protect data security and privacy.
Smart vehicles-enabled intelligent transportation system (ITS) supports a wide range of applications, such as, but not limited to, traffic planning and management, collision avoidance alert system, automated road speed enforcement, electronic toll collection, and real-time parking management, to name a few. However, it suffers from various types of security and privacy issues due to insecure communication among the entities over public channels. Therefore, an efficient and lightweight security mechanism is essential to protect the data that is both at rest as well as in transit. To this direction, we propose a public blockchain-envisioned secure communication framework for ITS (PBSCF-ITS). The proposed PBSCF-ITS guarantees access control and key management among the vehicle to vehicle, vehicle to roadside unit, and roadside unit to cloud server. We analyze the security of PBSCF-ITS to prove its resilience against various types of possible attacks. Furthermore, the performance of PBSCF-ITS with other related competing schemes has been compared. The obtained results illustrate that PBSCF-ITS outperforms the existing ones. Additionally, the pragmatic study of PBSCF-ITS is conducted to check its influence on various network-related performance parameters, like the number of mined blocks and transactions per block.

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