Performance Analysis of Compressive Sensing Based Physical Layer Authentication for AMI

Yonggu Lee, E. Hwang, Jinho Choi
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引用次数: 1

Abstract

Advanced metering infrastructure (AMI) systems play a crucial role in smart grid, where smart meters have two-way communications to remotely send meter readings up on request. While wireless technologies are highly desirable for flexible, adaptable, and cost-effective smart metering deployments, there are a number of issues to be addressed in terms of security and privacy. In this paper, we study a compressive sensing (CS) based physical layer authentication scheme over a multicarrier system and analyze its security performance against impersonation attack. In particular, we derive conditional distributions for the hypothesis testing used in authentication. From them, we are able to guarantee security performances in terms of the probabilities of false alarm and authentication error.
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基于压缩感知的AMI物理层认证性能分析
先进的计量基础设施(AMI)系统在智能电网中发挥着至关重要的作用,智能电表具有双向通信功能,可以根据要求远程发送电表读数。虽然无线技术非常适合灵活、适应性强且经济高效的智能计量部署,但在安全性和隐私性方面仍有许多问题需要解决。本文研究了一种基于压缩感知(CS)的多载波系统物理层认证方案,并分析了其抗冒充攻击的安全性能。特别地,我们导出了用于认证的假设检验的条件分布。从虚警概率和鉴权错误概率两方面来保证安全性能。
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