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SKM: Scalable Key Management for Advanced Metering Infrastructure in Smart Grids

机译:SKM:用于智能电网中高级计量基础架构的可扩展密钥管理

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摘要

Advanced metering infrastructure (AMI) plays a critical role in the smart grid. It enables intelligent applications such as load control switching, demand side management, and meter data management by creating a bidirectional communication network for smart meters and utility systems. Consequently, AMI should be strictly protected to ensure reliable and secure operations of smart grid. In this paper, we first show that a recently proposed key management scheme for AMI by Liu et al. suffers from the desynchronization attack, and, at the same time, it lacks scalability due to inefficient key management. Then, we propose a new scalable key management (SKM) scheme characterized by combining identity-based cryptosystem and efficient key tree technique. The scheme SKM possesses advantages of efficiency and flexibility in key management. In particular, the cost of SKM is $O(log n)$ in either aspect of computation and communication ( $n$ is the number of smart meters), which is significantly reduced from the cost of $O(n)$ in the scheme of Liu et al. We analyze security and performance of SKM in detail to show that SKM is efficient in computation and communication cost.
机译:先进的计量基础架构(AMI)在智能电网中扮演着至关重要的角色。通过为智能电表和公用事业系统创建双向通信网络,它可以实现智能应用,例如负载控制切换,需求侧管理和电表数据管理。因此,应严格保护AMI,以确保智能电网的可靠和安全运行。在本文中,我们首先展示了Liu 等人最近提出的AMI密钥管理方案。该方案遭受去同步攻击,并且由于密钥管理效率低而缺乏可伸缩性。然后,我们提出了一种新的可扩展密钥管理(SKM)方案,其特征在于结合了基于身份的密码系统和有效的密钥树技术。 SKM方案在密钥管理方面具有效率和灵活性的优势。特别是,在计算和通信的任何方面,SKM的成本为 $ O(log n)$ $ n $ 是智能电表的数量),与在Liu et al。方案中的 $ O(n)$ 。我们分析了安全性和性能SKM详细说明了SKM在计算和通信成本方面的效率。

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