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首页> 外文期刊>Parallel and Distributed Systems, IEEE Transactions on >ACPN: A Novel Authentication Framework with Conditional Privacy-Preservation and Non-Repudiation for VANETs
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ACPN: A Novel Authentication Framework with Conditional Privacy-Preservation and Non-Repudiation for VANETs

机译:ACPN:一种新颖的身份验证框架,具有针对VANET的有条件的隐私保护和不可否认性

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摘要

In Vehicular Ad hoc NETworks (VANETs), authentication is a crucial security service for both inter-vehicle and vehicle-roadside communications. On the other hand, vehicles have to be protected from the misuse of their private data and the attacks on their privacy, as well as to be capable of being investigated for accidents or liabilities from non-repudiation. In this paper, we investigate the authentication issues with privacy preservation and non-repudiation in VANETs. We propose a novel framework with preservation and repudiation (ACPN) for VANETs. In ACPN, we introduce the public-key cryptography (PKC) to the pseudonym generation, which ensures legitimate third parties to achieve the non-repudiation of vehicles by obtaining vehicles’ real IDs. The self-generated PKC-based pseudonyms are also used as identifiers instead of vehicle IDs for the privacy-preserving authentication, while the update of the pseudonyms depends on vehicular demands. The existing ID-based signature (IBS) scheme and the ID-based online/offline signature (IBOOS) scheme are used, for the authentication between the road side units (RSUs) and vehicles, and the authentication among vehicles, respectively. Authentication, privacy preservation, non-repudiation and other objectives of ACPN have been analyzed for VANETs. Typical performance evaluation has been conducted using efficient IBS and IBOOS schemes. We show that the proposed ACPN is feasible and adequate to be used efficiently in the VANET environment.
机译:在车载Ad hoc NETworks(VANET)中,身份验证对于车辆间通信和车辆路边通信都是至关重要的安全服务。另一方面,必须保护车辆免遭滥用其私人数据和攻击其隐私的侵害,并且必须能够对车辆进行调查以防止因不可抵赖而引起的事故或责任。在本文中,我们研究了VANET中具有隐私保护和不可否认性的身份验证问题。我们提出了一种用于VANET的具有保留和否认(ACPN)的新颖框架。在ACPN中,我们在假名一代中引入了公共密钥加密(PKC),以确保合法的第三方通过获取车辆的真实ID来实现车辆的不可否认性。自行生成的基于PKC的假名也被用作标识符,而不是用于车辆ID的隐私保护认证,而假名的更新取决于车辆需求。现有的基于ID的签名(IBS)方案和基于ID的在线/离线签名(IBOOS)方案分别用于路侧单元(RSU)和车辆之间的身份验证以及车辆之间的身份验证。对于VANET,已经分析了ACPN的身份验证,隐私保护,不可否认性和其他目标。已使用有效的IBS和IBOOS方案进行了典型的性能评估。我们表明,提出的ACPN是可行的,并且足以在VANET环境中有效使用。

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