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PBA: Prediction-Based Authentication for Vehicle-to-Vehicle Communications

机译:PBA:车辆到车辆通信的基于预测的身份验证

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摘要

In vehicular networks, broadcast communications are critically important, as many safety-related applications rely on single-hop beacon messages broadcast to neighbor vehicles. However, it becomes a challenging problem to design a broadcast authentication scheme for secure vehicle-to-vehicle communications. Especially when a large number of beacons arrive in a short time, vehicles are vulnerable to computation-based Denial of Service (DoS) attacks that excessive signature verification exhausts their computational resources. In this paper, we propose an efficient broadcast authentication scheme called Prediction-Based Authentication (PBA) to not only defend against computation-based DoS attacks, but also resist packet losses caused by high mobility of vehicles. In contrast to most existing authentication schemes, our PBA is an efficient and lightweight scheme since it is primarily built on symmetric cryptography. To further reduce the verification delay for some emergency applications, PBA is designed to exploit the sender vehicle’s ability to predict future beacons in advance. In addition, to prevent memory-based DoS attacks, PBA only stores shortened re-keyed Message Authentication Codes (MACs) of signatures without decreasing security. We analyze the security of our scheme and simulate PBA under varying vehicular network scenarios. The results demonstrate that PBA fast verifies almost 99 percent messages with low storage cost not only in high-density traffic environments but also in lossy wireless environments.
机译:在车载网络中,广播通信至关重要,因为许多与安全相关的应用都依赖于广播到相邻车辆的单跳信标消息。然而,设计用于安全的车对车通信的广播认证方案成为具有挑战性的问题。尤其是当大量信标在短时间内到达时,车辆容易受到基于计算的拒绝服务(DoS)攻击的攻击,过度的签名验证会耗尽其计算资源。在本文中,我们提出了一种有效的广播身份验证方案,称为基于预测的身份验证(PBA),不仅可以防御基于计算的DoS攻击,而且还可以抵抗由于车辆的高移动性而引起的数据包丢失。与大多数现有的身份验证方案相反,我们的PBA是高效且轻量级的方案,因为它主要基于对称密码学。为了进一步减少某些紧急情况下的验证延迟,PBA旨在利用发送方车辆的能力来提前预测未来的信标。另外,为了防止基于内存的DoS攻击,PBA仅存储签名的缩短的重新输入密钥的消息认证码(MAC),而不会降低安全性。我们分析了我们方案的安全性,并在不同的车辆网络场景下模拟了PBA。结果表明,PBA不仅在高密度流量环境中而且在有损耗的无线环境中,都以较低的存储成本快速验证了将近99%的消息。

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