Abstract'/> Computationally efficient privacy preserving anonymous mutual and batch authentication schemes for vehicular ad hoc networks
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Computationally efficient privacy preserving anonymous mutual and batch authentication schemes for vehicular ad hoc networks

机译:用于车辆自组织网络的计算有效的隐私保护匿名相互和批量身份验证方案

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AbstractIn the near future, it is envisioned that vehicular Ad hoc networks (VANETs) will be making use of long-distance communication techniques, such as cellular networks and Worldwide Interoperability for Microwave Access (WiMAX), to get instant Internet access for making the communication between vehicles and fixed road side infrastructure. Moreover, VANETs will also make use of short-distance communication methods, such as Dedicated Short-Range Communications (DSRC) and Wireless Fidelity (Wi-Fi) to perform short range communication between vehicles in an ad hoc manner. This Internet connection can provide facility to other vehicles to send traffic related messages, collisions, infotainment messages other useful safety alerts. In such a scenario, providing authentication between vehicle to infrastructure and vehicle to vehicle is a challenging task. In order to provide this facility, in this paper, we propose a computationally efficient privacy preserving anonymous authentication scheme based on the use of anonymous certificates and signatures for VANETs in making them an important component of Internet of Things (IoT) and the development of smart cities. Even though there are several existing schemes available to provide such anonymous authentication based on anonymous certificates and signatures in VANETs, the existing schemes suffer from high computational 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 in a particular period in VANETs which would lead to increased message loss. Hence, we use a computationally efficient anonymous mutual authentication scheme to validate the message source as well as to verify the integrity of messages along with a conditional tracking mechanism to trace the real identity of misbehaving vehicles and revoke them from VANET in the case of dispute. In this paper, we also introduce an efficient anonymous batch authentication protocol to be used in IoT for Road Side Units (RSUs) to authenticate multiple vehicles simultaneously rather than one after the other such that the total authentication time can be dramatically reduced. This proposed scheme is implemented and the performance analysis shows that our scheme is more efficient in terms of certificate and signature verification cost, while preserving conditional privacy in VANETs.HighlightsProposed a computationally efficient privacy preserving anonymous mutual authentication scheme for VANETs (CPAV) to verify the authenticity of OBUs without revealing their real identities for V2V communications in IoT.Proposed data integrity to messages which is suitably required for VANETs.Proposed a conditional tracking mechanism through which the TA traces misbehaving vehicles or RSUs that abuses the VANET.Proposed an efficient batch authentication scheme to anonymously authenticate more number of vehicles or messages simultaneously to alleviate the authentication burden greatly.
机译: 摘要 在不久的将来,可以预见车载Ad hoc网络(VANET)将使用长距离通信技术,例如作为蜂窝网络和全球微波接入互通性(WiMAX)的一部分,从而获得即时Internet接入,以实现车辆与固定路边基础设施之间的通信。而且,VANET还将利用诸如专用短程通信(DSRC)和无线保真(Wi-Fi)之类的短距离通信方法以自组织方式在车辆之间进行短距离通信。这种Internet连接可以为其他车辆提供便利,以发送与交通相关的消息,碰撞,信息娱乐消息以及其他有用的安全警报。在这种情况下,在车辆对基础设施和车辆对车辆之间提供认证是一项艰巨的任务。为了提供此功能,在本文中,我们基于VANET的匿名证书和签名的使用,提出了一种计算有效的隐私保护匿名身份验证方案,以使其成为物联网(IoT)和智能化发展的重要组成部分。城市。即使有几种现有方案可用于基于VANET中的匿名证书和签名提供此类匿名身份验证,但现有方案在证书吊销列表(CRL)检查过程以及证书和签名验证过程中仍遭受较高的计算成本。因此,不可能在VANET中的特定时间段内验证大量消息,这将导致消息丢失增加。因此,我们使用计算效率高的匿名双向身份验证方案来验证消息源并验证消息的完整性,并使用条件跟踪机制来跟踪行为异常的车辆的真实身份,并在发生纠纷时将其从VANET中撤消。在本文中,我们还介绍了一种高效的匿名批处理身份验证协议,该协议将在IoT中用于路边单元(RSU),以同时对多辆车辆进行身份验证,而不是一个接一个地进行身份验证,这样可以大大缩短总身份验证时间。该提议的方案得以实施,性能分析表明,该方案在证书和签名验证成本方面更为有效,同时保留了VANET中的条件隐私。 突出显示 为VANET(CPAV)提出了一种计算有效的隐私保护匿名相互身份验证方案,以在不泄露OBU的情况下进行验证他们在物联网中V2V通信的真实身份。 建议为VANET适当地提供消息的数据完整性。 提出了一种条件跟踪机制,TA可以通过该机制跟踪行为不当的滥用VANET的车辆或RSU。 提出了一种有效的批量身份验证方案来匿名验证更多内容同时减少车辆或消息的数量以大大减轻身份验证负担。 < / ce:抽象>

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