On the Security of a Secure and Computationally Efficient Authentication and Key Agreement Scheme for Internet of Vehicles

Kisung Park, Myeonghyun Kim, Youngho Park
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Abstract

In the Internet of Vehicles (IoV) environments, vehicles and roadside units (RSUs) communicate predominantly through public channels. These vehicles and RSUs exchange various data, such as traffic density, location, speed, etc. Therefore, secure and efficient authentication and key establishment (AKE) are needed to guarantee user privacy when exchanging data between vehicles and RSUs. Recently, a secure and computationally AKE scheme have been proposed to construct secure IoV environments. In their research, the authors asserted that their AKE scheme provides comprehensive security properties, protecting against various potential threats while simultaneously ensuring session key integrity, robust mutual authentication. This paper proved that the previous scheme does not prevent various attacks using logical and mathematical analyses. Moreover, we demonstrated that this scheme does not meet the essential security requirements and correctness of security assumptions. We perform the simulation proof using AVISPA, which is well known as a formal verification tool. To enhance the resilience of attacks, we propose solutions aimed at developing more robust and efficient AKE for IoV environments.
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论安全且计算高效的车联网认证和密钥协议方案的安全性
在车联网(IoV)环境中,车辆和路边装置(RSU)主要通过公共渠道进行通信。这些车辆和 RSU 交换各种数据,如交通密度、位置、速度等。因此,在车辆和 RSU 之间交换数据时,需要安全高效的身份验证和密钥建立(AKE)来保证用户隐私。最近,有人提出了一种安全且计算量低的 AKE 方案来构建安全的物联网环境。在他们的研究中,作者声称他们的 AKE 方案提供了全面的安全特性,可抵御各种潜在威胁,同时确保会话密钥的完整性和稳健的相互验证。本文通过逻辑和数学分析证明,以前的方案无法防止各种攻击。此外,我们还证明了该方案不符合基本的安全要求和安全假设的正确性。我们使用著名的形式验证工具 AVISPA 进行了仿真证明。为了增强对攻击的抵御能力,我们提出了旨在为物联网环境开发更稳健、更高效的 AKE 的解决方案。
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