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ABAKA: An Anonymous Batch Authenticated and Key Agreement Scheme for Value-Added Services in Vehicular Ad Hoc Networks

机译:ABAKA:车载自组织网络中增值服务的匿名批认证和密钥协议方案

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摘要

In this paper, we introduce an anonymous batch authenticated and key agreement (ABAKA) scheme to authenticate multiple requests sent from different vehicles and establish different session keys for different vehicles at the same time. In vehicular ad hoc networks (VANETs), the speed of a vehicle is changed from 10 to 40 m/s (36–144 km/h); therefore, the need for efficient authentication is inevitable. Compared with the current key agreement scheme, ABAKA can efficiently authenticate multiple requests by one verification operation and negotiate a session key with each vehicle by one broadcast message. Elliptic curve cryptography is adopted to reduce the verification delay and transmission overhead. The security of ABAKA is based on the elliptic curve discrete logarithm problem, which is an unsolved NP-complete problem. To deal with the invalid request problem, which may cause the batch verification fail, a detection algorithm has been proposed. Moreover, we demonstrate the efficiency merits of ABAKA through performance evaluations in terms of verification delay, transmission overhead, and cost for rebatch verifications, respectively. Simulation results show that both the message delay and message loss rate of ABAKA are less than that of the existing elliptic curve digital signature algorithm (ECDSA)-based scheme.
机译:在本文中,我们引入了一种匿名批认证和密钥协商(ABAKA)方案,以对从不同车辆发出的多个请求进行身份验证,并同时为不同车辆建立不同的会话密钥。在车辆自组织网络(VANET)中,车辆速度从10变为40 m / s(36–144 km / h);因此,不可避免地需要有效的认证。与当前的密钥协商方案相比,ABAKA可以通过一个验证操作有效地验证多个请求,并通过一个广播消息与每个车辆协商会话密钥。采用椭圆曲线密码技术减少验证延迟和传输开销。 ABAKA的安全性基于椭圆曲线离散对数问题,这是一个尚未解决的NP完全问题。为了解决可能导致批量验证失败的无效请求问题,提出了一种检测算法。此外,我们通过性能评估分别在验证延迟,传输开销和重新批验证的成本方面证明了ABAKA的效率优点。仿真结果表明,ABAKA的消息延迟和消息丢失率均小于现有的基于椭圆曲线数字签名算法(ECDSA)的方案。

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