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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
P. A. Chezhegova, A. M. Koreneva, M. V. Polyakov, G. V. Firsov, “On mixing properties of register transformations of ciphers TEA1 and TEA2”, Prikl. Diskr. Mat. Suppl., 2024, no. 17, 120–122 |
2. |
M. V. Polyakov, A. M. Koreneva, “Quantum cryptanalysis of the KB-256 block cipher”, Prikl. Diskr. Mat. Suppl., 2024, no. 17, 112–115 |
3. |
A. M. Koreneva, G. V. Firsov, “Post-quantum distinguishing attack on one block ciphers mode of operation”, Prikl. Diskr. Mat. Suppl., 2024, no. 17, 98–102 |
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2023 |
4. |
A. M. Koreneva, G. V. Firsov, “On one block cipher mode of operation for protection of block-oriented system storage devices”, Prikl. Diskr. Mat. Suppl., 2023, no. 16, 52–56 |
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2021 |
5. |
D. A. Bobrovskiy, D. I. Zadorozhny, A. M. Koreneva, T. R. Nabiev, V. M. Fomichev, “Experimental study of the characteristics of one method of integrity checking of large volume data storage”, Prikl. Diskr. Mat. Suppl., 2021, no. 14, 71–74 |
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2020 |
6. |
V. M. Fomichev, A. M. Koreneva, T. R. Nabiev, “Characteristics of the data integrity check algorithm based on additive generators and $s$-boxes”, Prikl. Diskr. Mat. Suppl., 2020, no. 13, 62–66 |
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7. |
V. M. Fomichev, D. A. Bobrovskiy, A. M. Koreneva, “Experimental estimates of the computational complexity of one class of cryptoalgorithms based on the generalization of Feistel networks”, Prikl. Diskr. Mat. Suppl., 2020, no. 13, 59–62 |
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2019 |
8. |
V. M. Fomichev, A. M. Koreneva, A. R. Miftakhutdinova, D. I. Zadorozhny, “Evaluation of the maximum performance of block encryption algorithms”, Mat. Vopr. Kriptogr., 10:2 (2019), 181–191 |
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9. |
V. M. Fomichev, A. M. Koreneva, A. I. Tulebaev, “On the parameters of 2-GOST round key generator”, Prikl. Diskr. Mat. Suppl., 2019, no. 12, 137–141 |
1
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10. |
A. M. Koreneva, “Evaluation of mixing characteristics for Merkle–Damgard hash functions”, Prikl. Diskr. Mat. Suppl., 2019, no. 12, 107–110 |
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2018 |
11. |
V. M. Fomichev, Ya. E. Avezova, A. M. Koreneva, S. N. Kyazhin, “Primitivity and local primitivity of digraphs and nonnegative matrices”, Diskretn. Anal. Issled. Oper., 25:3 (2018), 95–125 ; J. Appl. Industr. Math., 12:3 (2018), 453–469 |
15
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12. |
A. M. Koreneva, “On mixing and nonlinear properties of modified additive generators”, Prikl. Diskr. Mat. Suppl., 2018, no. 11, 65–68 |
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2017 |
13. |
A. M. Koreneva, V. M. Fomichev, “The mixing properties of modified additive generators”, Diskretn. Anal. Issled. Oper., 24:2 (2017), 32–52 ; J. Appl. Industr. Math., 11:2 (2017), 215–226 |
6
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14. |
A. M. Koreneva, “On primitivity of mixing digraphs associated with $2$-feedbacks shift registers”, Prikl. Diskr. Mat., 2017, no. 37, 32–51 |
15. |
A. M. Koreneva, “Exponents of mixing digraphs associated with one and two feedbacks shift registers”, Prikl. Diskr. Mat. Suppl., 2017, no. 10, 84–87 |
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2016 |
16. |
A. M. Koreneva, V. M. Fomichev, “Sufficient variables for transition function of a modified additive generator”, Prikl. Diskr. Mat. Suppl., 2016, no. 9, 51–54 |
1
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17. |
A. M. Koreneva, V. N. Martyshin, “Experimental research on exponents of mixing matrices for generalized Feistel networks”, Prikl. Diskr. Mat. Suppl., 2016, no. 9, 48–51 |
2
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2015 |
18. |
A. M. Dorokhova, “Mixing digraphs of transformations based on shift registers with two feedbacks”, Prikl. Diskr. Mat. Suppl., 2015, no. 8, 8–11 |
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2014 |
19. |
A. M. Dorokhova, V. M. Fomichev, “Improvement of exponent estimates for mixing graphs of bijective shift registers over a set of binary vectors”, Prikl. Diskr. Mat., 2014, no. 1(23), 77–83 |
7
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20. |
A. M. Dorokhova, “Estimates for exponents of mixing graphs relating to some modifications of additive generators”, Prikl. Diskr. Mat. Suppl., 2014, no. 7, 60–64 |
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2013 |
21. |
A. M. Koreneva, “Block ciphers based on two feedback shift registers”, Prikl. Diskr. Mat. Suppl., 2013, no. 6, 39–41 |
2
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2012 |
22. |
A. M. Koreneva, V. M. Fomichev, “About a Feistel block cipher generalization”, Prikl. Diskr. Mat., 2012, no. 3(17), 34–40 |
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23. |
A. M. Koreneva, V. M. Fomichev, “Cryptographic properties of block ciphers based on shift registers”, Prikl. Diskr. Mat. Suppl., 2012, no. 5, 49–51 |
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