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An efficient identity-based signature scheme without bilinear pairing for vehicle-to-vehicle communication in VANETs

机译:基于高效的基于身份的签名方案,无需双线性配对,用于vanets的车辆到车辆通信

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摘要

Vehicles exchange traffic-related messages with neighboring vehicles to aid passengers and provide efficient traffic management. This is done via wireless communication channels in Vehicular Ad Hoc Networks (VANETs). Security and privacy issues are a major concern in VANETs. A typical attack consists of a malicious third party modifying and retransmitting intercepted messages. Current state of the art solutions enable a verifier to authenticate the source of received messages as well as to check their integrity before accepting them. However, these solutions do not adequately address the efficiency with which multiple messages are verified in VANETs deployed in high traffic density areas. Due to this, the computational load on a verifier is increased. In this paper, an efficient Identity-Based Signature with Conditional Privacy-Preserving Authentication (IBS-CPPA) scheme based on the Elliptic Curve Cryptography (ECC) and general one-way hash functions for V2V communication is proposed. This scheme supports the batch signature verification method, which enables each vehicle to authenticate a large number of messages at the same time. We provide a security proof of the proposed IBS-CPPA scheme in the random oracle model. The performance evaluation indicates that our scheme is more efficient in terms of computational cost with respect to similar schemes.
机译:车辆与邻近车辆交流与交通相关的信息,以帮助乘客并提供有效的交通管理。这是通过车辆ad hoc网络(vanet)中的无线通信信道完成的。安全和隐私问题是Vanets中的主要问题。典型的攻击由恶意第三方修改和重新传输截获的消息组成。现有技术的解决方案使验证者能够在接受它们之前验证所接收的消息源以及检查其完整性。然而,这些解决方案没有充分解决在展开在高流量密度区域的VANET中验证多个消息的效率。由此,验证者上的计算负载增加。本文提出了一种基于有条件的隐私保留认证(IBS-CPPA)方案的基于有效的基于身份的签名(EBC-CPPA)和V2V通信的一般单向散列函数。该方案支持批量签名验证方法,该方法使每个车辆能够同时验证大量消息。我们在随机Oracle模型中提供所提出的IBS-CPPA方案的安全证明。性能评估表明,我们的方案在对类似方案的计算成本方面更有效。

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