基于生物识别区块链的vanet多因素隐私保护认证方案

Myra Annatasha Umang Dineal Gumis, Travis Iran Money, Zetty Elica Affandi, Siti Najihah Sapuan, Mastura Tony, Mohd. Haziq Qayyim Safian, Nur Huda Hamka
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引用次数: 2

摘要

如何提供最合适或兼容的方案来抵御针对车载自组织网络(vanet)的各种攻击是一个非常具有挑战性的问题。不仅如此,高认证和通信开销也成为VANETs的一个问题。因此,在本文中,我们使用了多因素身份验证,可以抵御各种针对vanet的攻击。一种基于生物识别区块链的VANETs多因素隐私保护认证方案。该方案采用了一种基于物理不可克隆函数(PUF)和车辆授权用户生物特征数据的鲁棒伪身份多因素VANET方案。为了计算计算成本和身份验证开销,我们在下面比较三种计算成本和身份验证开销。从复杂度分析来看,该方案具有较低的认证开销、较高的安全级别和较低的计算成本。从未来的角度来看,我们希望这个方案所涉及的成本仍然可以降低,因为我们提供了高安全性。不仅如此,我们还希望这个方案能够得到实际的实施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biometric Blockchain-based Multifactor Privacy Perserving Authentication Scheme for VANETs
To provide the most suitable or compatible scheme to work against various attack toward vehicular ad hoc networks (VANETs) is very challenging. Not only that the high authentication and communication overhead also became a problem for VANETs. Thus, in this paper we use multifactor authentication that could resist various attack toward VANETs. A biometric blockchain-based multifactor privacy-preserving authentication scheme for VANETs. This scheme is proposed by using a new robust pseudo-identity multifactor VANET scheme based on Physical Unclonable Functions (PUF) and biometric data of the vehicle’s authorized user. To calculate the computational cost and the authentication overhead, we compare three of our computational cost and authentication overhead below. From the complexity analysis this proposed scheme has a lower authentication overhead and offers better security level and a low computational cost can be achieved. From the perspective of future, we hope that the cost that involve in this scheme still can be reduce as we offer a high security level. Not only that, but we also hope that this scheme can be implemented practically.
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