An Efficient Physically Unclonable Function based Authentication Scheme for V2G Network

Giriraj Sharma, A. Joshi, S. Mohanty
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引用次数: 8

Abstract

With the advancement of ICT, the Electrical vehicles (EVs) are connected to the smart grid and this type of network known as Vehicle to Grid (V2G). During the Energy trading process, EV consumers also receives an economic benefit where they buy energy at low cost during slack hours and sell same to grid during higher traffic. However, the V2G network faces various security challenges like hardware security, integrity, identity preservation, mutual authentication, etc. Since EVs and CSs (charging stations) are generally unmanned hence physical security is also an important concern. In this paper, we proposed a secure, lightweight, and hardware-based key agreement scheme using Physical Unclonable Function (PUF). The proposed scheme uses the PUF concept to perform mutual authentication (MA) among EV, CS, and the GS. The formal security analysis has been performed using AVISPA tool. Further, the performance evaluation results show that overhead costs in communication and computation are less compared to the existing schemes.
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一种高效的V2G网络物理不可克隆功能认证方案
随着信息通信技术的进步,电动汽车(ev)连接到智能电网,这种类型的网络被称为车辆到电网(V2G)。在能源交易过程中,电动汽车消费者也获得了经济效益,他们在空闲时段以低成本购买能源,并在高流量时段将其出售给电网。然而,V2G网络面临着硬件安全、完整性、身份保存、相互认证等诸多安全挑战。由于电动汽车和充电站通常是无人驾驶的,因此物理安全也是一个重要问题。本文提出了一种基于物理不可克隆功能(PUF)的安全、轻量级、基于硬件的密钥协议方案。该方案使用PUF概念在EV、CS和GS之间进行相互认证(MA)。使用AVISPA工具进行了正式的安全性分析。此外,性能评估结果表明,与现有方案相比,该方案在通信和计算方面的开销更小。
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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