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Batten Down the Hatches: Securing Neighborhood Area Networks of Smart Grid in the Quantum Era

机译:缓和阴影:在量子时代保护智能电网的邻域网络

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摘要

On account of the recent advances in quantum computers, it becomes pressing to consider quantum-safe authentication schemes for two-way communications in neighborhood area networks of smart grid, i.e., preventing possible attacks that the quantum computers could bring to the grid. In this paper, we take a further step toward this goal by integrating the lattice-based public-key encryption and key exchange techniques to provide mutual authentication between smart meters and the neighborhood gateway. Security analysis shows that our proposed scheme is secure under attacks from both quantum and conventional computers, including the recently introduced key reuse attacks. In addition, the proposed schemes can also achieve forward security, which guarantees that the secrets leaked in the current session will not result in the leakage of secrets in former sessions. Furthermore, the proposed scheme also gives prior consideration to the smart meters with limited computation capacity and puts as little burden on them as possible. Extensive performance analysis is also conducted, and the results demonstrate the efficiency of our proposed scheme, as well as the relatively low communication and storage costs.
机译:由于量子计算机的最新发展,迫切需要考虑用于智能电网的邻域网络​​中的双向通信的量子安全认证方案,即,防止量子计算机可能带来的可能的攻击。在本文中,我们通过集成基于点阵的公共密钥加密和密钥交换技术以实现智能电表与邻居网关之间的相互身份验证,朝着这一目标迈出了进一步的一步。安全分析表明,我们提出的方案在来自量子计算机和常规计算机的攻击(包括最近引入的密钥重用攻击)下都是安全的。此外,所提出的方案还可以实现前向安全性,从而保证当前会话中泄漏的机密不会导致以前会话中的泄漏。此外,提出的方案还预先考虑了具有有限计算能力的智能电表,并给它们带来了尽可能少的负担。还进行了广泛的性能分析,结果表明了我们提出的方案的效率以及相对较低的通信和存储成本。

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