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CPAV: Computationally Efficient Privacy Preserving Anonymous Authentication Scheme for Vehicular Ad Hoc Networks

机译:CPAV:计算车辆临时网络匿名认证方案的计算上高效

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In this paper, we propose a computationally efficient privacy preserving anonymous authentication scheme based on the use of anonymous certificates and signatures for vehicular ad hoc networks (VANETs). Even though there were many existing schemes to provide anonymous authentication based on anonymous certificates and signatures in VANKT s, the existing schemes suffer from high computation cost in the certificate revocation list (CRL) checking process and in the certificate and the signature verification process. Therefore, it is not possible to verify a large number of messages per second in VANETs which would lead to high message loss. Hence, we use a computationally efficient anonymous mutual authentication mechanism to validate the message source and anonymous signatures in order to guarantee the integrity of messages. Moreover, a conditional tracking mechanism is introduced to trace the real identity of vehicles and revoke them from VANKT in the case of dispute. This proposed scheme is implemented and performance analysis shows that our scheme is more efficient in terms of certificate and signature verification delay, while keeping conditional privacy in VANETs.
机译:在本文中,我们提出了一种基于使用匿名证书和车辆ad hoc网络(VANET)的匿名证书和签名来保护匿名认证方案的计算上有效的隐私。尽管存在许多现有方案来基于VANKT S中的匿名证书和签名提供匿名认证,但现有方案在证书撤销列表(CRL)检查过程中以及证书和签名验证过程中遭受高计算成本。因此,不可能验证vanet中每秒大量消息,这将导致高消息丢失。因此,我们使用计算上有效的匿名相互认证机制来验证消息源和匿名签名,以保证消息的完整性。此外,引入了条件跟踪机构以追踪车辆的真实身份并在争议的情况下从VANKT撤销它们。实施该方案是实施的,绩效分析表明,我们的计划在证书和签名验证延迟方面更有效,同时保持了VANET的条件隐私。

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