Comparison of security arguments of promising key encapsulation mechanisms

IF 0.2 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Y. Gorbenko, S.O. Kandii
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引用次数: 0

Abstract

The study of key encapsulation mechanisms on algebraic lattices is one of the important directions in modern post-quantum cryptography, since many mechanisms are already either standardized (ANSI X.9.98, DSTU 8961:2019 "Skelya") or are promising candidates for standardization (CRYSTALS-Kyber, FrodoKEM). The purpose of this work is to compare the security arguments of DSTU 8961:2019 "Skelya", CRYSTALS-Kyber, FrodoKEM key encapsulation mechanisms. The paper provides a comparison of theoretical evidence in the idealized random oracle (ROM) and quantum random oracle (QROM) models, as well as a comparison of specific values ​of security parameters in the core-SVP model, which is, in fact, a standard for lattice cryptography. Since all three key encapsulation mechanisms are based on different complex problems (NTRU, Module-LWE, LWE), a comparison of complex lattice theory problems and a comparison of their security arguments are additionally given. The strengths and weaknesses of the considered key encapsulation mechanisms are shown, and areas of research that require more detailed attention are highlighted.
有前途的密钥封装机制的安全参数比较
代数格上密钥封装机制的研究是现代后量子密码学的重要方向之一,因为许多机制已经标准化(ANSI X.9.98, DSTU 8961:2019“Skelya”)或有希望标准化(CRYSTALS-Kyber, FrodoKEM)。本工作的目的是比较DSTU 8961:2019“Skelya”,CRYSTALS-Kyber, FrodoKEM密钥封装机制的安全性参数。本文比较了理想随机密码模型(ROM)和量子随机密码模型(QROM)的理论证据,并比较了核- svp模型中安全参数的具体值,该模型实际上是格密码学的标准。由于这三种关键封装机制都是基于不同的复杂问题(NTRU、Module-LWE、LWE),因此本文还对复杂格理论问题进行了比较,并对它们的安全性参数进行了比较。显示了所考虑的关键封装机制的优点和缺点,并强调了需要更详细关注的研究领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia
Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia ENGINEERING, ELECTRICAL & ELECTRONIC-
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