Обґрунтування вимог та шляхи їх реалізації при синтезі доказово стійких перспективних електронних підписів: Fìz.-mat. model. ìnf. tehnol. 2021, 32:116-120

The paper identifies and substantiates the requirements and ways to implement these requirements at the synthesis of proof-stable perspective electronic signatures. Today there is a problem of building post-quantum electronic signatures. At the stages of solving this problem, a wide range of require...

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Date:2021
Author Affiliations:
  • Maryna Yesina — АТ «Інститут інформаційних технологій», доцент кафедри безпеки інформаційних систем і технологій Харківського національного університету імені В. Н. Каразіна, майдан Свободи, 6, 61000, Харків
  • Ivan Gorbenko — АТ «Інститут інформаційних технологій», професор кафедри безпеки інформаційних систем і технологій Харківського національного університету імені В. Н. Каразіна, майдан Свободи, 6, 61000, Харків
Keywords:keywords
Main Authors: Yesina, Maryna, Gorbenko, Ivan
Format: Article
Language:Ukrainian
Published: Інститут прикладних проблем механіки і математики ім. Я. С. Підстригача НАН України 2021
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Online Access:https://www.fmmit.lviv.ua/index.php/fmmit/article/view/171
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Journal Title:Physico-mathematical modeling and informational technologies

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Physico-mathematical modeling and informational technologies
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Summary:The paper identifies and substantiates the requirements and ways to implement these requirements at the synthesis of proof-stable perspective electronic signatures. Today there is a problem of building post-quantum electronic signatures. At the stages of solving this problem, a wide range of requirements for technical, technical-economical and other capabilities is formed. At the national and international levels, in the most generalized form, these requirements are implemented at the NIST USA level during the NIST PQC competition for electronic signatures, asymmetric ciphers and key encapsulation protocols. In Ukraine, work is also underway to synthesize such post-quantum cryptotransformations. Requirements in these areas are justified and approved at the state level. The peculiarity of the national requirements is that the requirements for protection against special quantum attacks and attacks through side channels have been significantly increased. References Chen, L., Jordan, S., Liu, Y.-K., Moody, D., Peralta, R., Perlner, R., Smith-Tone, D. Report on Post-Quatum Cryptography. NISTIR 8105 (DRAFT). http://csrc.nist.gov/publications/drafts/nistir-8105/nistir_8105_draft.pdf. DOI doi.org/10.6028/nist.ir.8105 Yesina, M., Gorbenko, Yu. (supervisor). (2016). “Methods of cryptographic primitives comparative analysis”, Inżynier XXI wieku (“Engineer of XXI Century” – the VI Inter University Conference of Students, PhD Students and Young Scientists: University of Bielsko-Biala, Poland, December 02, 2016). Bielsko-Biała: Wydawnictwo Naukowe Akademii Techniczno-Humanistycznej w Bielsku-Białej, Chapter in monograph. DOI doi.org/10.4467/20842627oz.18.013.9083 Yesina, M. V. (2016). Porivniannia ta obgruntuvannia metodu analizu iierarkhii ta metodu vahovykh koefitsiientiv i yikh zastosuvannia, Teoretychni ta prykladni aspekty pobudovy prohramnykh system (TAAPSD16): Pratsi XIII Mizhnarodnoi naukovo-praktychnoi konferentsii, 5–9 hrudnia 2016 r., Kyivskyi natsionalnyi universytet, Kyia, Ukraina. Horbenko, I. D., Oleksiichuk, A. M., Kachko, O. H., Horbenko, Yu. I., Yesina, M. V., Kandii, S. O. (2020). Metody obchyslennia systemnykh parametriv dlia elektronnoho pidpysu «Srystals-Dilithium» 128, 256, 384 ta 512 bit rivniv bezpeky Radiotekhnika. Kh. : Kharkivskyi natsionalnyi universytet radioelektroniky, 202, 5-27. Horbenko, I. D., Kandii, S. O., Yesina, M. V., Ostrianska, Ye. V. (2020). Heneratsiia zahalnosystemnykh parametriv dlia kryptosystemy Falcon dlia 256, 384, 512 bit bezpeky. Radiotekhnika. – Kh. : Kharkivskyi natsionalnyi universytet radioelektroniky, 202, 57-63. 
DOI:10.15407/fmmit2021.32.116