使用对数签名的基于单词问题的系统密码分析

IF 0.2 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Y. Kotukh, T. Okhrimenko, O. Dyachenko, N. Rotaneva, L. Kozina, D. Zelenskyi
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引用次数: 0

摘要

量子计算机的快速发展和进步促进了基于数学上复杂或困难问题的公钥密码系统的发展,因为使用量子算法破解现代传统密码系统的威胁日益现实。值得注意的是,对于量子计算来说,经典数学上复杂的整数分解和离散对数问题不再被认为是复杂的。在2000年代,针对各种复杂的群论问题,人们考虑并提出了数十种密码系统。其中一个复杂的问题就是世界的问题。基于字问题的密码系统的第一个实现是由Magliveras提出的,使用有限置换群的对数签名,lemken等人进一步提出了随机覆盖的非对称密码系统。这一思路的创新之处在于将单词难题推广到大量的群体中。本文总结了密码系统基本结构的已知密码学分析结果,并定义了改进结构密码学特性的方法和使用非交换群作为基本结构的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cryptanalysis of the system based on word problems using logarithmic signatures
Rapid development and advances of quantum computers are contributing to the development of public key cryptosystems based on mathematically complex or difficult problems, as the threat of using quantum algorithms to hack modern traditional cryptosystems is becoming much more real every day. It should be noted that the classical mathematically complex problems of factorization of integers and discrete logarithms are no longer considered complex for quantum calculations. Dozens of cryptosystems were considered and proposed on various complex problems of group theory in the 2000s. One of such complex problems is the problem of the word. One of the first implementations of the cryptosystem based on the word problem was proposed by Magliveras using logarithmic signatures for finite permutation groups and further proposed by Lempken et al. for asymmetric cryptography with random covers. The innovation of this idea is to extend the difficult problem of the word to a large number of groups. The article summarizes the known results of cryptanalysis of the basic structures of the cryptosystem and defines recommendations for ways to improve the cryptographic properties of structures and the use of non-commutative groups as basic structures.
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Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia
Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia ENGINEERING, ELECTRICAL & ELECTRONIC-
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