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Lightweight anonymous key distribution scheme for smart grid using elliptic curve cryptography

机译:椭圆曲线密码学的智能电网轻量级匿名密钥分发方案

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摘要

Due to efficiency, security and reliability, the smart grid attracts more and more attentions from both industry and researchers. To implement secure communication in the smart grid, how to distribute secret keys among participants become an important issue. Several key distribution schemes for the smart grid have been proposed to guarantee secure communication. However, most of them cannot provide smart meter anonymity or have unsatisfactory performance. Based on the identity-based cryptography, this study proposes an anonymous key distribution (AKD) scheme for the smart grid using the elliptic curve cryptography. The proposed AKD scheme can provide the smart meter anonymity and mutual authentication between two participants without any help of the trusted anchor. Due to the fact that no bilinear paring operation is involved in the execution, the proposed AKD scheme has much better performance than the latest AKD scheme proposed by Tsai and Lo. Detailed performance analysis shows that the computation and the communication costs of the authors' AKD scheme is about 82.39 and 52.33% less than that of Tsai and Lo's AKD scheme. Besides, security analysis shows that the proposed AKD scheme is provably secure in the random oracle model.
机译:由于效率,安全性和可靠性,智能电网吸引了业界和研究人员越来越多的关注。为了在智能电网中实现安全通信,如何在参与者之间分配密钥成为重要的问题。已经提出了几种用于智能电网的密钥分配方案以保证安全的通信。但是,它们中的大多数不能提供智能仪表匿名性或性能不能令人满意。在基于身份的密码学的基础上,本研究提出了一种使用椭圆曲线密码学的智能电网匿名密钥分配(AKD)方案。所提出的AKD方案可以在两个参与者之间提供智能仪表匿名性和相互认证,而无需可信任锚的任何帮助。由于执行中不涉及双线性配对运算,因此所提出的AKD方案比Tsai和Lo提出的最新AKD方案具有更好的性能。详细的性能分析表明,作者的AKD方案的计算和通信成本比Tsai和Lo的AKD方案分别减少了约82.39和52.33%。此外,安全性分析表明,所提出的AKD方案在随机预言机模型中具有可证明的安全性。

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