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车载通信中无线传感器网络的安全认证协议。

Secure Authentication Protocol for Wireless Sensor Networks in Vehicular Communications.

机构信息

School of Electronics Engineering, Kyungpook National University, Daegu 41566, Korea.

Samsung Electronics, Suwon 16677, Korea.

出版信息

Sensors (Basel). 2018 Sep 21;18(10):3191. doi: 10.3390/s18103191.

Abstract

With wireless sensor networks (WSNs), a driver can access various useful information for convenient driving, such as traffic congestion, emergence, vehicle accidents, and speed. However, a driver and traffic manager can be vulnerable to various attacks because such information is transmitted through a public channel. Therefore, secure mutual authentication has become an important security issue, and many authentication schemes have been proposed. In 2017, Mohit et al. proposed an authentication protocol for WSNs in vehicular communications to ensure secure mutual authentication. However, their scheme cannot resist various attacks such as impersonation and trace attacks, and their scheme cannot provide secure mutual authentication, session key security, and anonymity. In this paper, we propose a secure authentication protocol for WSNs in vehicular communications to resolve the security weaknesses of Mohit et al.'s scheme. Our authentication protocol prevents various attacks and achieves secure mutual authentication and anonymity by using dynamic parameters that are changed every session. We prove that our protocol provides secure mutual authentication by using the Burrows⁻Abadi⁻Needham logic, which is a widely accepted formal security analysis. We perform a formal security verification by using the well-known Automated Validation of Internet Security Protocols and Applications tool, which shows that the proposed protocol is safe against replay and man-in-the-middle attacks. We compare the performance and security properties of our protocol with other related schemes. Overall, the proposed protocol provides better security features and a comparable computation cost. Therefore, the proposed protocol can be applied to practical WSNs-based vehicular communications.

摘要

利用无线传感器网络 (WSN),驾驶员可以访问各种有用的驾驶信息,例如交通拥堵、紧急情况、车辆事故和速度。然而,由于此类信息是通过公共通道传输的,因此驾驶员和交通管理员可能容易受到各种攻击。因此,安全的相互认证已成为一个重要的安全问题,已经提出了许多认证方案。2017 年,Mohit 等人提出了一种用于车辆通信中的 WSN 的认证协议,以确保安全的相互认证。然而,他们的方案无法抵抗各种攻击,例如仿冒和跟踪攻击,并且他们的方案无法提供安全的相互认证、会话密钥安全性和匿名性。在本文中,我们提出了一种用于车辆通信中的 WSN 的安全认证协议,以解决 Mohit 等人方案的安全弱点。我们的认证协议通过使用每个会话都更改的动态参数来防止各种攻击,并实现安全的相互认证和匿名性。我们使用广泛接受的形式安全分析 Burrows-Abadi-Needham 逻辑来证明我们的协议提供了安全的相互认证。我们使用著名的自动化验证互联网安全协议和应用程序工具进行正式的安全验证,表明所提出的协议可以防止重播和中间人攻击。我们将我们的协议与其他相关方案的性能和安全属性进行了比较。总体而言,所提出的协议提供了更好的安全功能和可比的计算成本。因此,所提出的协议可以应用于实际的基于 WSN 的车辆通信。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a0d/6209973/0762fde219d1/sensors-18-03191-g001.jpg

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