Analysis of ways to increase stability of cryptographic algorithms on algebraic lattices against time attacks

IF 0.2 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia Pub Date : 2021-12-24 DOI:10.30837/rt.2021.4.207.05
О.E. Petrenko, О.S. Petrenko, Оleksand Sievierinov, О.І. Fiediushyn, А.V. Zubrych, D.V. Shcherbina
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引用次数: 1

Abstract

The aim of this work is to study the algorithms, the stability of which is based on the search for a short lattice vector, as well as to obtain time-resistant parameters of these algorithms. Existing methods for generating keys and choosing parameters for cryptographic transformations on algebraic lattices resistant to time attacks are considered. It is shown that the uniform distribution of coefficients for generating the NTRU algorithm keys has certain shortages, namely, a limited number of parameters suitable for use in cryptographical transformations. This is due to the vulnerability of this algorithm to time attacks. The possibility of using a discrete normal (Gaussian) distribution to form a key pair, which will prevent the sensitivity of the algorithm to time attacks, is considered. This method of generation requires checking the obtained sample for compliance with the properties of the normal distribution. The usage of SAGA tests has been proposed. They make it possible to check the Gaussian samples obtained using the discrete normal distribution. The verification result shows whether or not the sample has properties that are inherent in the normal distribution. The application of the SAGA statistical tests to the NTRU cryptographic transformation polynomials allowed us to conclude that the discrete Gaussian sample makes it possible to generate time-resistant parameters using the norm or the length of the short basis (vector) of the lattice as the mean-square deviation.
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代数格上提高密码算法抗时间攻击稳定性的方法分析
本工作的目的是研究这些算法的稳定性,这些算法的稳定性是基于对短晶格向量的搜索,并获得这些算法的抗时参数。考虑了现有的抗时间攻击代数格上密码变换的密钥生成和参数选择方法。结果表明,用于生成NTRU算法密钥的系数均匀分布存在一定的不足,即适合用于密码变换的参数数量有限。这是由于该算法容易受到时间攻击。考虑了使用离散正态(高斯)分布形成密钥对的可能性,这将防止算法对时间攻击的敏感性。这种生成方法需要检查得到的样本是否符合正态分布的性质。提出了SAGA试验的使用方法。它们使检验使用离散正态分布得到的高斯样本成为可能。验证结果表明样品是否具有正态分布固有的性质。SAGA统计测试对NTRU密码变换多项式的应用使我们能够得出这样的结论:离散高斯样本可以使用格的范数或短基(向量)的长度作为均方差来生成抗时间参数。
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Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia
Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia ENGINEERING, ELECTRICAL & ELECTRONIC-
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