VANET 中的最新认证和验证方案:调查

IF 5.8 2区 计算机科学 Q1 TELECOMMUNICATIONS Vehicular Communications Pub Date : 2024-05-31 DOI:10.1016/j.vehcom.2024.100804
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引用次数: 0

摘要

车载 Ad-Hoc 网络(VANET)是移动 Ad-Hoc 网络(MANET)的一个子集,是围绕移动车辆形成的无线网络,可实现车辆、路边基础设施和服务器之间的通信。随着自动驾驶汽车和联网汽车的兴起,围绕 VANET 的安全问题也越来越多。由于缺乏用户信任,VANET 在全面部署时仍面临隐私方面的挑战。影响 VANET 的关键因素包括其动态拓扑和高流动性特征。认证协议是实现 VANET 内实体安全传输的基石。尽管各方齐心协力,但仍然需要采用验证方法来完善身份验证协议。形式验证是一种数学方法,可使开发人员验证协议并精确纠正设计错误。因此,本综述将重点放在作为 VANET 内实体传输安全关键要素的验证协议上。它对现有协议进行了比较分析,找出了研究空白,并介绍了一个结合形式验证和威胁建模的新框架。综述考虑了影响安全性的关键因素,揭示了当前面临的挑战,并强调了用户信任的重要性。所提出的框架不仅增强了 VANET 的安全性,还为汽车领域不断发展的形式验证领域做出了贡献。作为本研究的成果,确定了一些研究空白、挑战和未来研究方向。这些见解将为研究人员在 VANET 内建立安全验证通信提供宝贵的指导。
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State-of-the-art authentication and verification schemes in VANETs: A survey

Vehicular Ad-Hoc Networks (VANETs), a subset of Mobile Ad-Hoc Networks (MANETs), are wireless networks formed around moving vehicles, enabling communication between vehicles, roadside infrastructure, and servers. With the rise of autonomous and connected vehicles, security concerns surrounding VANETs have grown. VANETs still face challenges related to privacy with full-scale deployment due to a lack of user trust. Critical factors shaping VANETs include their dynamic topology and high mobility characteristics. Authentication protocols emerge as the cornerstone of enabling the secure transmission of entities within a VANET. Despite concerted efforts, there remains a need to incorporate verification approaches for refining authentication protocols. Formal verification constitutes a mathematical approach enabling developers to validate protocols and rectify design errors with precision. Therefore, this review focuses on authentication protocols as a pivotal element for securing entity transmission within VANETs. It presents a comparative analysis of existing protocols, identifies research gaps, and introduces a novel framework that incorporates formal verification and threat modeling. The review considers key factors influencing security, sheds light on ongoing challenges, and emphasises the significance of user trust. The proposed framework not only enhances VANET security but also contributes to the growing field of formal verification in the automotive domain. As the outcomes of this study, several research gaps, challenges, and future research directions are identified. These insights would offer valuable guidance for researchers to establish secure authentication communication within VANETs.

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来源期刊
Vehicular Communications
Vehicular Communications Engineering-Electrical and Electronic Engineering
CiteScore
12.70
自引率
10.40%
发文量
88
审稿时长
62 days
期刊介绍: Vehicular communications is a growing area of communications between vehicles and including roadside communication infrastructure. Advances in wireless communications are making possible sharing of information through real time communications between vehicles and infrastructure. This has led to applications to increase safety of vehicles and communication between passengers and the Internet. Standardization efforts on vehicular communication are also underway to make vehicular transportation safer, greener and easier. The aim of the journal is to publish high quality peer–reviewed papers in the area of vehicular communications. The scope encompasses all types of communications involving vehicles, including vehicle–to–vehicle and vehicle–to–infrastructure. The scope includes (but not limited to) the following topics related to vehicular communications: Vehicle to vehicle and vehicle to infrastructure communications Channel modelling, modulating and coding Congestion Control and scalability issues Protocol design, testing and verification Routing in vehicular networks Security issues and countermeasures Deployment and field testing Reducing energy consumption and enhancing safety of vehicles Wireless in–car networks Data collection and dissemination methods Mobility and handover issues Safety and driver assistance applications UAV Underwater communications Autonomous cooperative driving Social networks Internet of vehicles Standardization of protocols.
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