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A Secure and Efficient Key Establishment Scheme for Communications of Smart Meters and Service Providers in Smart Grid

机译:智能电网中智能电表和服务提供商的通信安全有效的主要建立方案

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Security is an indispensable part of smart grid (SG). Key establishment protocols play a vital role in fulfilling the security requirements in SG. In recent years, many key establishment schemes have been proposed for SG. However, only three of them offer the strong smart meter anonymity. In 2015, Tsai and Lo presented an anonymous key establishment scheme to be employed in SG. Recently, Odelu et al. have demonstrated that Tsai and Lo's scheme suffers from the ephemeral secret leakage attack. Furthermore, another scheme has been proposed recently by He et al. that has improved the efficiency of Tsai and Lo's scheme. However, besides its merits, we indicate that He et al.'s scheme suffers from both known session-specific temporary information attack and private key leakage. Additionally, these three anonymous schemes have the key escrow problem since the trusted anchor is aware of entities' private key. Hence, to cover the existing issues, in this paper we propose a key establishment scheme that not only is free from the security challenges of the previous anonymous schemes and key escrow problem, but also is efficient in terms of both computational and communication costs. Finally, yet importantly, we present the performance analysis of our proposed scheme on a state-of-the-art advanced RISC machine (ARM) chip, namely NXP LPC1788, as a suitable hardware for the smart meters.
机译:安全性是智能电网(SG)的不可或缺的一部分。主要建立协议在履行SG中的安全要求方面发挥着至关重要的作用。近年来,已经提出了许多关键建立计划。但是,其中只有三个提供强大的智能仪表匿名。 2015年,Tsai和Lo提出了一个匿名的主要建立计划,以便在SG中雇用。最近,Odelu等人。已经证明Tsai和Lo的计划遭受了短暂的秘密泄漏攻击。此外,他最近通过他劳动提出了另一种方案。这提高了Tsai和Lo方案的效率。然而,除了其优点之外,我们表明他的计划患有已知的会议特定的临时信息攻击和私钥泄漏。此外,这三个匿名方案具有钥匙托管问题,因为可信锚知道实体的私钥。因此,为了涵盖现有问题,本文提出了一个关键的建立方案,不仅可以摆脱以前的匿名计划和主要托管问题的安全挑战,而且在计算和通信成本方面也有效。最后,重要的是,我们展示了我们在最先进的先进的RISC机器(ARM)芯片上的拟议计划的绩效分析,即NXP LPC1788,作为智能仪表的合适硬件。

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