DBCPCA:Double-layer blockchain-assisted conditional privacy-preserving cross-domain authentication for VANETs

IF 4.4 3区 计算机科学 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS Ad Hoc Networks Pub Date : 2024-07-16 DOI:10.1016/j.adhoc.2024.103600
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Abstract

Ensuring secure authentication between participating entities in VANETs has emerged as a critical challenge. Most of existing schemes mainly consider authentication issue in single administrative domain and suffer from various limitations that include privacy-preserving and malicious entity tracking. This paper proposes a double-layer blockchain-assisted conditional privacy-preserving cross-domain authentication scheme (DBCPCA) that leverages blockchain technology and certificate-less signatures to address these challenges. In DBCPCA, the upper-layer blockchain is used in cross-domain authentication by sharing inter-domain information among multiple different administrative domains. The lower-layer blockchain is employed in intra-domain authentication. In DBCPCA, we also introduce an anonymity mechanism to protect the real identity of a vehicle while enabling the system to trace a malicious vehicle, thereby addressing conditional privacy-preserving concerns. In addition, a security analysis of the proposed scheme demonstrates that it can meet our specified security objectives. Finally, we make a detailed experimental comparison with the most relative solutions such as BCPPA and BCGS. The results show that the DBCPCA scheme reduces the time cost by at least 66.68 % compared to the BCPPA scheme during the signature generation phase. During the signature verification phase, the DBCPCA scheme reduces the time cost by at least 62.39 % compared to the BCGS scheme.

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DBCPCA:面向 VANET 的双层区块链辅助条件式隐私保护跨域认证
确保 VANET 中参与实体之间的安全认证已成为一项严峻挑战。大多数现有方案主要考虑单个管理域的身份验证问题,存在各种局限性,包括隐私保护和恶意实体跟踪。本文提出了一种双层区块链辅助的有条件隐私保护跨域身份验证方案(DBCPCA),利用区块链技术和无证书签名来应对这些挑战。在 DBCPCA 中,上层区块链用于跨域身份验证,在多个不同的管理域之间共享域间信息。下层区块链用于域内身份验证。在 DBCPCA 中,我们还引入了匿名机制,以保护车辆的真实身份,同时使系统能够追踪恶意车辆,从而解决保护隐私的条件问题。此外,对所提出方案的安全性分析表明,该方案能够满足我们指定的安全目标。最后,我们与 BCPPA 和 BCGS 等最相关的解决方案进行了详细的实验比较。结果表明,在签名生成阶段,DBCPCA 方案比 BCPPA 方案至少减少了 66.68% 的时间成本。在签名验证阶段,DBCPCA 方案比 BCGS 方案至少减少了 62.39% 的时间成本。
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来源期刊
Ad Hoc Networks
Ad Hoc Networks 工程技术-电信学
CiteScore
10.20
自引率
4.20%
发文量
131
审稿时长
4.8 months
期刊介绍: The Ad Hoc Networks is an international and archival journal providing a publication vehicle for complete coverage of all topics of interest to those involved in ad hoc and sensor networking areas. The Ad Hoc Networks considers original, high quality and unpublished contributions addressing all aspects of ad hoc and sensor networks. Specific areas of interest include, but are not limited to: Mobile and Wireless Ad Hoc Networks Sensor Networks Wireless Local and Personal Area Networks Home Networks Ad Hoc Networks of Autonomous Intelligent Systems Novel Architectures for Ad Hoc and Sensor Networks Self-organizing Network Architectures and Protocols Transport Layer Protocols Routing protocols (unicast, multicast, geocast, etc.) Media Access Control Techniques Error Control Schemes Power-Aware, Low-Power and Energy-Efficient Designs Synchronization and Scheduling Issues Mobility Management Mobility-Tolerant Communication Protocols Location Tracking and Location-based Services Resource and Information Management Security and Fault-Tolerance Issues Hardware and Software Platforms, Systems, and Testbeds Experimental and Prototype Results Quality-of-Service Issues Cross-Layer Interactions Scalability Issues Performance Analysis and Simulation of Protocols.
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