A Scalable Blockchain-based Approach for Authentication and Access Control in Software Defined Vehicular Networks

Léo Mendiboure, M. Chalouf, F. Krief
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引用次数: 12

Abstract

Software Defined Vehicular Networking (SDVN) could be the future of the vehicular networks, enabling interoperability between heterogeneous networks and mobility management. Thus, the deployment of large SDVN is considered. However, SDVN is facing major security issues, in particular, authentication and access control issues. Indeed, an unauthorized SDN controller could modify the behavior of switches (packet redirection, packet drops) and an unauthorized switch could disrupt the operation of the network (reconnaissance attack, malicious feedback). Due to the SDVN features (decentralization, mobility) and the SDVN requirements (flexibility, scalability), the Blockchain technology appears to be an efficient way to solve these authentication and access control issues. Therefore, many Blockchain-based approaches have already been proposed. However, two key challenges have not been addressed: authentication and access control for SDN controllers and high scalability for the underlying Blockchain network. That is why in this paper we propose an innovative and scalable architecture, based on a set of interconnected Blockchain sub-networks. Moreover, an efficient access control mechanism and a cross-sub-networks authentication/revocation mechanism are proposed for all SDVN devices (vehicles, roadside equipment, SDN controllers). To demonstrate the benefits of our approach, its performances are compared with existing solutions in terms of throughput, latency, CPU usage and read/write access to the Blockchain ledger. In addition, we determine an optimal number of Blockchain sub-networks according to different parameters such as the number of certificates to store and the number of requests to process.
软件定义车辆网络中基于可扩展区块链的身份验证和访问控制方法
软件定义的车辆网络(SDVN)可能是车辆网络的未来,实现异构网络和移动性管理之间的互操作性。因此,考虑部署大型SDVN。然而,SDVN面临着重大的安全问题,特别是认证和访问控制问题。事实上,未经授权的SDN控制器可以修改交换机的行为(数据包重定向、数据包丢弃),未经授权的交换机可以破坏网络的运行(侦察攻击、恶意反馈)。由于SDVN的特性(去中心化、移动性)和SDVN的要求(灵活性、可扩展性),区块链技术似乎是解决这些身份验证和访问控制问题的有效方法。因此,已经提出了许多基于区块链的方法。然而,两个关键挑战尚未解决:SDN控制器的身份验证和访问控制以及底层区块链网络的高可扩展性。这就是为什么在本文中,我们提出了一种基于一组相互连接的区块链子网络的创新和可扩展架构。此外,针对所有SDVN设备(车辆、路边设备、SDN控制器),提出了高效的访问控制机制和跨子网认证/撤销机制。为了证明我们的方法的好处,将其性能与现有解决方案在吞吐量、延迟、CPU使用率和对区块链分类账的读/写访问方面进行比较。此外,我们根据不同的参数(如要存储的证书数量和要处理的请求数量)确定区块链子网的最佳数量。
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