A privacy oriented authorized key agreement framework for vehicular edge computing

IF 1.5 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS Security and Privacy Pub Date : 2022-11-04 DOI:10.1002/spy2.277
Shanil Sharma, D. Mishra, Saurabh Rana
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Abstract

The revolution of technology has presented smart vehicles. To use reliable cloud service for smart vehicles at low latency, vehicular edge computing (VEC) is introduced. VEC adopts a unique approach for providing better vehicular connection, data storage, and sharing information among IoT‐enabled vehicles. However, the establishment of secure communication and authorized access to data in these cloud‐based services are always a concern. To ensure secure and authorized communication, we construct an authenticated key agreement framework for VEC. The edge computing‐based proposed vehicular communication protocol provides secure and authorized communication for an edge‐endorsed IoT environment. The security is proved on the random oracle model. The analysis of computational efficiency is also included. Furthermore, we have conferred the comparison analysis of our designed scheme with other schemes.
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一种面向隐私的车载边缘计算授权密钥协议框架
科技革命带来了智能汽车。为了在低延迟下为智能汽车提供可靠的云服务,引入了车辆边缘计算(vehicle edge computing, VEC)。VEC采用独特的方式,在具有物联网功能的车辆之间提供更好的车辆连接、数据存储和信息共享。然而,在这些基于云的服务中建立安全通信和授权访问数据一直是一个问题。为了保证通信的安全性和可授权性,我们构建了一个VEC认证密钥协议框架。基于边缘计算的拟议车载通信协议为边缘支持的物联网环境提供了安全和授权的通信。在随机oracle模型上证明了该算法的安全性。并对计算效率进行了分析。并对所设计方案与其他方案进行了对比分析。
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