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A Secure Enhanced Non-Cooperative Cognitive Division Multiple Access for Vehicle-to-Vehicle Communication

机译:车对车通信的安全增强的非合作认知分工多路访问

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摘要

The growth of the Internet has led to the increasing usage of smart infotainment applications on the vehicular ad-hoc network (VANET). Preserving privacy and security regarding the provision of smart infotainment applications while on the go is most desired. Thus, a secure authentication scheme is required. Many privacy-preserving security schemes have been developed in recent times using cryptography approaches. However, these incur key management and communication overhead. The usage of third-party servers incurs the overhead of key computation, storage and distribution. Post completion of the initialization phase, the message is secured using cryptography and is shared among vehicles. The design of the proposed secure enhanced non-cooperative cognitive division multiple access ( ) aims to eliminate the need for the local message available with the parties to be released for provisioning secure safety-related applications. To overcome the research challenges, this work presents a novel security scheme, namely secure non-cooperative cognitive medium access ( ). The experiment is conducted to evaluate the overhead incurred in provisioning security to . The outcome shows that the overhead incurred by over was negligible to provide the real-time security requirements of smart infotainment applications, which is experimentally shown in this paper in terms of throughput, collision and successful packet transmission considering varied environmental models such as cities, highways and rural areas.
机译:互联网的发展导致车载自组织网络(VANET)上智能信息娱乐应用程序的使用不断增加。最需要在旅途中保护与提供智能信息娱乐应用程序有关的隐私和安全性。因此,需要安全的认证方案。最近,使用密码学方法开发了许多保护隐私的安全方案。但是,这些会产生密钥管理和通信开销。使用第三方服务器会导致密钥计算,存储和分发的开销。初始化阶段完成后,该消息将使用加密技术进行保护,并在车辆之间共享。提议的安全性增强的非合作性认知划分多路访问()的设计旨在消除为提供安全性与安全相关的应用程序而需要发布的各方可用的本地消息。为了克服研究挑战,这项工作提出了一种新颖的安全方案,即安全的非合作性认知媒体访问()。进行该实验以评估为设置安全性所产生的开销。结果表明,over所产生的开销可以忽略不计,无法提供智能信息娱乐应用程序的实时安全性要求,在考虑到各种环境模型(例如城市,高速公路)的情况下,本文在吞吐量,冲突和成功的数据包传输方面通过实验证明了这一点和农村地区。

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