Authentication and key management for Advanced Metering Infrastructures utilizing physically unclonable functions

Mohamed Nabeel, Sam Kerr, Xiaoyu Ding, E. Bertino
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引用次数: 63

Abstract

Conventional utility meters are increasingly being replaced with smart meters as smart meter based AMIs (Advanced Metering Infrastructures) provide many benefits over conventional power infrastrucutures. However, security issues pertaining to the data transmission between smart meters and utility servers have been a major concern. With large scale AMI deployments, addressing these issues is challenging. In particular, as data travels through several networks, secure end-to-end communication based on strong authentication mechanisms and a robust and scalable key management schemes are crucial for assuring the confidentiality and the integrity of this data. In this paper, we propose an approach based on PUF (physically unclonable function) technology for providing strong hardware based authentication of smart meters and efficient key management to assure the confidentiality and integrity of messages exchanged between smart meters and the utility. Our approach does not require modifications to the existing smart meter communication. We have developed a proof-of-concept implementation of the proposed approach which is also briefly discussed in the paper.
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利用物理不可克隆功能的高级计量基础设施的身份验证和密钥管理
传统的电表越来越多地被智能电表所取代,因为基于智能电表的ami(高级计量基础设施)比传统的电力基础设施提供了许多好处。然而,与智能电表和公用事业服务器之间的数据传输有关的安全问题一直是一个主要问题。在大规模AMI部署中,解决这些问题具有挑战性。特别是,当数据通过多个网络传输时,基于强大的身份验证机制和健壮且可扩展的密钥管理方案的安全端到端通信对于确保数据的机密性和完整性至关重要。本文提出了一种基于PUF(物理不可克隆功能)技术的方法,为智能电表提供强大的硬件认证和高效的密钥管理,以确保智能电表与公用事业公司之间交换消息的保密性和完整性。我们的方法不需要修改现有的智能电表通信。我们已经开发了一个拟议方法的概念验证实现,并在本文中进行了简要讨论。
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