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Privacy Preservation Protocol for Smart Grid Networks

机译:智能电网网络的隐私保存协议

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Smart grids networks carry critical and private data that may be employed by adversaries in learning about services running at home or its occupancy. It is therefore vital that robust protection be accorded to these complex infrastructures to thwart cyber-physical attacks. Although numerous cryptographic protocols have been developed for smart grid systems, majority of them do not consider de-synchronization attacks among others, or they lack conditional privacy and flexible key management. In terms of performance, they have high computation and communication overheads that are not ideal for resource constrained smart meters. In this paper, a lightweight privacy preservation protocol is proposed. Simulation results showed that it experienced the lowest computation and communication overheads among its peers. In addition, security evaluation using the widely known Dolev-Yao and Canetti-Krawczyk models showed that it offers backward secrecy, forward key secrecy, anonymity and is robust against de-synchronization and traceability attacks.
机译:智能电网网络携带批判性和私人数据,这些数据可能会受雇于学习在家中运行的服务或其占用的服务。因此,它至关重要的是,稳健的保护与这些复杂的基础架构赋予挫败网络物理攻击。虽然已经为智能电网系统开发了许多加密协议,但其中大多数不考虑除其他方面的解脱同步攻击,或者它们缺乏有条件的隐私和灵活的关键管理。在性能方面,它们具有高计算和通信开销,不适合资源受限智能仪表。本文提出了一种轻量级隐私保存协议。仿真结果表明,它在同行中经历了最低的计算和通信开销。此外,使用广为人知的Dolev-yao和Canetti-Krawzyk模型的安全性评估显示,它提供了向后保密,前瞻性密钥保密,匿名,并且稳健地防止去同步和可追溯性攻击。

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