Substantiation and proposals for the selection, improvement and standardization of the post-quantum electronic signature mechanism at the national and international levels

IF 0.2 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia Pub Date : 2021-12-24 DOI:10.30837/rt.2021.4.207.01
I. Gorbenko, O. Kachko, O. Potii, Y. Gorbenko, V. Ponomar, M. Yesina, I. V. Stelnik, S.O. Kandiy, К.O. Kuznetsova
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Abstract

At present and in the future, mathematical methods, mechanisms and algorithms of standardized asymmetric cryptotransformations such as electronic signature (ES) are and will be used for information cryptographic protection. Electronic signature is the main and essential component of cybersecurity, in terms of providing quality information security services such as integrity, irresistibility and authenticity of information and data processed. However, there are well-founded suspicions that in the post-quantum period the existing ES standards will be broken and compromised using classical and quantum cryptanalytic systems with appropriate mathematical, software and hardware-software. An analysis was performed, which confirms that quantum computers have already been developed, manufactured and used. It is believed that the actual state of development and use of powerful quantum computers and their mathematical and software is obviously strictly confidential and secure, and only publicly known data on quantum computers and their applications in cryptology are disclosed. A preliminary analysis has been carried out showing that in Ukraine there is an understanding of the existence of threats to cybersecurity and information security in the case of using available standardized ES in the transition and post-quantum periods. Currently, development and adoption of post-quantum ES standards is also one of the main issues in ensuring the necessary levels of security in the transition and post-quantum periods. The objective of this article is to substantiate, compare alternatives and develop proposals for the selection and standardization of post-quantum ES standards at the international and national levels, taking into account the results of the 2nd and 3rd rounds of the NIST US competition and national researches.
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国家和国际层面后量子电子签名机制选择、完善和标准化的实证与建议
目前和将来,标准化的非对称密码转换(如电子签名(ES))的数学方法、机制和算法已经并将用于信息密码保护。电子签名是网络安全的主要和必不可少的组成部分,可以提供所处理的信息和数据的完整性、不可抗拒性和真实性等优质信息安全服务。然而,有充分的理由怀疑,在后量子时期,现有的ES标准将被打破和破坏,使用经典和量子密码分析系统与适当的数学,软件和硬件软件。一项分析证实,量子计算机已经被开发、制造和使用。人们认为,强大的量子计算机及其数学和软件的开发和使用的实际状态显然是严格保密和安全的,只有公开的量子计算机及其在密码学中的应用数据才会被披露。初步分析表明,在乌克兰,在过渡和后量子时期使用可用的标准化ES的情况下,存在对网络安全和信息安全的威胁。目前,制定和采用后量子ES标准也是确保过渡和后量子时期必要的安全水平的主要问题之一。本文的目的是考虑到第二轮和第三轮NIST美国竞赛和国家研究的结果,为国际和国家层面的后量子ES标准的选择和标准化提供证据,比较替代方案并提出建议。
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Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia
Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia ENGINEERING, ELECTRICAL & ELECTRONIC-
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