基于分布式账本的可验证可信VANET协议研究

Muhammad Usman Aftab, M. Hussain, Anders Lindgren, Abdul Ghafoor
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引用次数: 3

摘要

为确保交通安全及车辆网络的正常运作,车辆特设网络(vanet)会定期向邻近节点及路旁单位(RSU)广播安全讯息或信标。因此,接收到的消息的真实性和完整性以及源节点中的信任至关重要,并且在故障可能导致危及生命的情况的应用程序中非常需要。文献中描述了几种基于数字签名的方法来实现这些消息的真实性。在这些方案中,具有高车辆密度的场景由RSU处理,并完成聚合签名验证。然而,这些方案中的大多数都是集中的和基于PKI的,我们的目标是开发一个分散的动态系统。除了真实性和完整性之外,信任管理在VANETs中起着重要作用,它使安全可靠的通信成为可能。已经提出了许多信任管理模型,但它仍然是一个正在进行的问题,类似地,在与信任管理系统相关的文献工作中,认证是通信过程中重要的安全服务,但并不主要存在。提出了一种安全、可公开验证的VANET通信方案,实现了源认证、消息认证、不可否认性、完整性和可公开验证性。所有这些都是通过数字签名、哈希消息认证码(HMAC)技术和区块链技术辅助的日志机制来实现的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards A Distributed Ledger Based Verifiable Trusted Protocol For VANET
To ensure traffic safety and proper operation of vehicular networks, safety messages or beacons are periodically broadcasted in Vehicular Adhoc Networks (VANETs) to neighboring nodes and road side units (RSU). Thus, authenticity and integrity of received messages along with the trust in source nodes is crucial and highly required in applications where a failure can result in life-threatening situations. Several digital signature based approaches have been described in literature to achieve the authenticity of these messages. In these schemes, scenarios having high level of vehicle density are handled by RSU where aggregated signature verification is done. However, most of these schemes are centralized and PKI based where our goal is to develop a decentralized dynamic system. Along with authenticity and integrity, trust management plays an important role in VANETs which enables ways for secure and verified communication. A number of trust management models have been proposed but it is still an ongoing matter of interest, similarly authentication which is a vital security service to have during communication is not mostly present in the literature work related to trust management systems. This paper proposes a secure and publicly verifiable communication scheme for VANET which achieves source authentication, message authentication, non repudiation, integrity and public verifiability. All of these are achieved through digital signatures, Hash Message Authentication Code (HMAC) technique and logging mechanism which is aided by blockchain technology.
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