A security mechanism for software-defined networking based communications in vehicle-to-grid

Shanghua Zhang, Qiang Li, Jun Wu, Jianhua Li, Gaolei Li
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引用次数: 10

Abstract

As a kind of new technologies in smart grid, vehicle-to-grid (V2G) constructs a flexible and extensible inter-operation platform between electric vehicles and grids, in which the bidirectional charging can be performed between vehicles and grid based on the demands. In V2G, there are numerous challenges among which cyber security is a major one that needs to be addressed with priority. The software-defined networking is an advanced architecture for next generation networks, which provide flexible control by separating control plane from data plane. The flexible configuration for the communications and security can enable more scalable, secure, and collaborative system, these make the SDN as a potential communication architecture for V2G. This paper aims to apply the SDN technology on V2G system, which we termed as software-definedV2G (SD-V2G). To the best of our knowledge, this is the first work to deal with the high dynamics of communications and security for V2G by using SDN. Moreover, we propose a novel security communication mechanism (SCM) for dynamic V2G system to ensure confidentiality, integrality, non-repudiation, authentication, etc. To evaluate the scheme, the security analysis, performances, and comparisons are done to demonstrate that the proposed software-defined SCM (SD-SCM) is possible and a promising solution for SD-V2G system. The proposed SD-SCM is significant to enhance the security for V2G.
一种基于软件定义网络的车对网通信安全机制
车到网(V2G)作为智能电网中的一种新技术,在电动汽车和电网之间构建了一个灵活、可扩展的互操作平台,可以根据需求在车到网之间进行双向充电。在V2G中,面临着许多挑战,其中网络安全是需要优先解决的主要挑战。软件定义网络是下一代网络的先进架构,通过将控制平面与数据平面分离,提供灵活的控制。灵活的通信和安全配置可以使系统更具可扩展性、安全性和协作性,使SDN成为V2G通信体系结构的潜在选择。本文旨在将SDN技术应用于V2G系统,我们称之为软件定义V2G (SD-V2G)。据我们所知,这是第一个通过使用SDN来处理V2G通信的高动态和安全性的工作。此外,我们提出了一种新的动态V2G系统安全通信机制(SCM),以确保机密性、完整性、不可否认性、认证等。为了评估该方案,进行了安全分析,性能和比较,以证明所提出的软件定义SCM (SD-SCM)是可行的,并且是SD-V2G系统的一个有前途的解决方案。所提出的SD-SCM对于提高V2G的安全性具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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