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Scalable and privacy-preserving authentication protocol for secure vehicular communications

机译:可扩展且保护隐私的身份验证协议,用于安全的车辆通信

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Most of the existing authentication protocols are based on either asymmetric cryptography like public-key infrastructure (PKI) or symmetric cryptography. The PKI-based authentication protocols are strongly recommended for solving security issues in VANETs. However, they have following shortcomings: (1) lengthy certificates lead to transmission and computation overheads, and (2) lack of privacy-preservation due to revealing of vehicle identity, communicated in broadcasting safety-message. Symmetric cryptography based protocols are faster because of a single secret key and simplicity; however, it does not ensure non-repudiation. In this paper, we present an Efficient, Scalable and Privacy-preserving Authentication (ESPA) protocol for secure vehicular ad hoc networks (VANETs). The protocol employs hybrid cryptography. In ESPA, the asymmetric PKI based pre-authentication and the symmetric hash message authentication code (HMAC) based authentication are adopted during vehicle to infrastructure (V2I) and vehicle to vehicle (V2V) communications, respectively. Extensive simulations are conducted to validate proposed ESPA protocol and compared with the existing work based on PKI and HMAC. The performance analysis showed that ESPA is more efficient, scalable and privacy-preserving secured protocol than the existing work.
机译:大多数现有的身份验证协议都基于非对称密码学(如公钥基础结构(PKI))或对称密码学。强烈建议使用基于PKI的身份验证协议来解决VANET中的安全问题。但是,它们具有以下缺点:(1)冗长的证书导致传输和计算开销,以及(2)由于在广播安全消息中进行通信而暴露出的车辆身份,因此缺乏隐私保护。基于对称加密的协议由于具有单个密钥和简单性,因此速度更快。但是,它不能确保不可否认性。在本文中,我们提出了一种用于安全车载自组网(VANET)的高效,可扩展和隐私保护的身份验证(ESPA)协议。该协议采用混合密码术。在ESPA中,分别在车辆到基础设施(V2I)和车辆到车辆(V2V)通信期间采用基于非对称PKI的预身份验证和基于对称哈希消息身份验证码(HMAC)的身份验证。进行了广泛的仿真,以验证提议的ESPA协议,并与基于PKI和HMAC的现有工作进行了比较。性能分析表明,ESPA比现有工作更有效,可扩展且具有隐私保护的安全协议。

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