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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
V. Yu. Kalachev, G. A. Ougolnitsky, A. B. Usov, “Dynamic cooperative game models of state regulation of innovations in universities”, Avtomat. i Telemekh., 2024, no. 7, 91–112 |
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2023 |
2. |
G. A. Ougolnitsky, A. B. Usov, “The interaction of economic agents in Cournot duopoly models under ecological conditions: a comparison of organizational modes”, Avtomat. i Telemekh., 2023, no. 2, 150–168 ; Autom. Remote Control, 84:2 (2023), 175–189 |
3
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3. |
Vassily Yu. Kalachev, Guennady A. Ougolnitsky, Anatoly B. Usov, “Dynamic Cournot oligopoly models of the state promotion of innovative electronic courses in universities”, Contributions to Game Theory and Management, 16 (2023), 74–86 |
4. |
M. A. Reshitko, A. B. Usov, G. A. Ougolnitsky, “Water consumption control model for regions with low water availability”, Computer Research and Modeling, 15:5 (2023), 1395–1410 |
5. |
D. Ninidze, G. A. Ugol'nitskii, A. B. Usov, “Management of innovation implementation using various information structures”, UBS, 105 (2023), 85–109 |
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2022 |
6. |
Vassily Yu. Kalachev, Guennady A. Ougolnitsky, Anatoly B. Usov, “Difference Stackelberg game theoretic model of innovations management in universities”, Contributions to Game Theory and Management, 15 (2022), 96–108 |
2
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7. |
M. A. Reshitko, A. B. Usov, “Neural network methods for optimal control problems”, Computer Research and Modeling, 14:3 (2022), 539–557 |
2
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8. |
Gennady A. Ougolnitsky, Anatoly B. Usov, “A comparative analysis of sustainable exploitation of renewable resources for different information structures”, Mat. Teor. Igr Pril., 14:1 (2022), 102–125 |
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2020 |
9. |
M. A. Reshitko, G. A. Ougolnitsky, A. B. Usov, “Numerical method for finding Nash and Shtakelberg equilibria in river water quality control models”, Computer Research and Modeling, 12:3 (2020), 653–667 |
4
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10. |
M. Kh. Malsagov, G. A. Ugol'nitskii, A. B. Usov, “Dynamic model of evaluation with corruption”, UBS, 87 (2020), 86–100 |
11. |
G. A. Ugol'nitskii, O. I. Gorbaneva, A. B. Usov, M. Agieva, M. Kh. Malsagov, “Theory of sustainable management in active systems”, UBS, 84 (2020), 89–113 |
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2019 |
12. |
Olga I. Gorbaneva, Anatoly B. Usov, Gennady A. Ougolnitsky, “Mechanisms of struggle with corruption in dynamic social and private interests coordination engine models”, Contributions to Game Theory and Management, 12 (2019), 140–150 |
1
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13. |
M. Kh. Malsagov, G. A. Ougolnitsky, A. B. Usov, “Struggle against economic corruption in resource allocation”, Computer Research and Modeling, 11:1 (2019), 173–185 |
2
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14. |
Gennady A. Ougolnitsky, Anatoly B. Usov, “Dynamic models of private and public interests combining in promoting innovations”, Mat. Teor. Igr Pril., 11:1 (2019), 96–114 |
3
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15. |
A. I. Sukhinov, G. A. Ougolnitsky, A. B. Usov, “Methods of solution of the game theoretic models of coordination of interests in the fishery regulation”, Matem. Mod., 31:7 (2019), 127–142 ; Math. Models Comput. Simul., 12:2 (2020), 176–184 |
3
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2017 |
16. |
A. I. Sukhinov, A. E. Chistyakov, G. A. Ugol'nitskii, A. B. Usov, A. V. Nikitina, M. V. Puchkin, I. S. Semenov, “Game-theoretic regulations for control mechanisms of sustainable development for shallow water ecosystems”, Avtomat. i Telemekh., 2017, no. 6, 122–137 ; Autom. Remote Control, 78:6 (2017), 1059–1071 |
17
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2016 |
17. |
G. A. Ougolnitsky, A. B. Usov, “Solution algorithms for differential models of hierarchical control systems”, Avtomat. i Telemekh., 2016, no. 5, 148–158 ; Autom. Remote Control, 77:5 (2016), 872–880 |
12
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18. |
G. A. Ougolnitsky, A. B. Usov, “Game-theoretic model of coordinations of interests at innovative development of corporations”, Computer Research and Modeling, 8:4 (2016), 673–684 |
5
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19. |
A. Nikitina, A. I. Sukhinov, G. A. Ugolnitsky, A. B. Usov, A. E. Chistyakov, M. Puchkin, I. S. Semenov, “Optimal control of sustainable development in biological rehabilitation of the Azov Sea”, Matem. Mod., 28:7 (2016), 96–106 ; Math. Models Comput. Simul., 9:1 (2017), 101–107 |
56
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2015 |
20. |
G. A. Ougolnitsky, A. B. Usov, A. I. Ryzhkin, “The compulsion method in the germeyer’s games at modeling three-level control system of the ship’s ballast water”, Computer Research and Modeling, 7:2 (2015), 281–288 |
2
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21. |
O. I. Gorbaneva, G. A. Ougolnitsky, A. B. Usov, “The models of corruption in hierarchical control systems”, Probl. Upr., 2015, no. 1, 2–10 |
4
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22. |
A. Nikitina, M. Puchkin, I. S. Semenov, A. I. Sukhinov, G. A. Ugol'nitskii, A. B. Usov, A. E. Chistyakov, “Differential game of fish kill prevention in shallow waterbodies”, UBS, 55 (2015), 343–361 |
11
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23. |
A. Nazirov, G. A. Ougolnitsky, A. B. Usov, “Game-theoretical model of three-level marketing system considering environmental requirements”, UBS, 55 (2015), 326–342 |
1
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2014 |
24. |
G. A. Ugol'nitskii, A. B. Usov, “Equilibria in models of hierarchically organized dynamical control systems with regard to sustainable development conditions”, Avtomat. i Telemekh., 2014, no. 6, 86–102 ; Autom. Remote Control, 75:6 (2014), 1055–1068 |
23
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25. |
G. A. Ougolnitsky, A. B. Usov, A. I. Ryzhkin, “The motivation method in the Germeyer's games at modeling three-level control system of the ship's ballast water”, Computer Research and Modeling, 6:4 (2014), 535–542 |
3
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26. |
Gennady A. Ougolnitskiy, Anatoly B. Usov, “The dynamic hierarchical games of two players in programming strategies and their exhibits”, Mat. Teor. Igr Pril., 6:1 (2014), 73–90 |
5
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27. |
G. A. Ougolnitsky, A. B. Usov, “Modeling of corruption in three-level control systems”, Probl. Upr., 2014, no. 1, 53–62 |
4
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2013 |
28. |
G. A. Ugol'nitskii, A. B. Usov, “A study of differential models for hierarchical control systems via their discretization”, Avtomat. i Telemekh., 2013, no. 2, 109–123 ; Autom. Remote Control, 74:2 (2013), 252–263 |
24
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29. |
Andrey A. Chernushkin, Guennady A. Ougolnitsky, Anatoly B. Usov, “Dynamic Models of Corruption in Hierarchical Control Systems”, Contributions to Game Theory and Management, 6 (2013), 63–74 |
1
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30. |
Gennady A. Ougolnitsky, Anatoliy B. Usov, “Dynamic hierarchical play two persons in programme strategy and their exhibits”, Mat. Teor. Igr Pril., 5:2 (2013), 82–104 ; Autom. Remote Control, 76:11 (2015), 2056–2069 |
10
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2012 |
31. |
Andrey A. Antonenko, Guennady A. Ougolnitsky, Anatoly B. Usov, “Static Models of Corruption in Hierarchical Control Systems”, Contributions to Game Theory and Management, 5 (2012), 20–32 |
1
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32. |
G. A. Ougolnitsky, A. B. Usov, “The static corruption models in the water resources quality control systems”, Probl. Upr., 2012, no. 4, 38–44 |
5
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2010 |
33. |
Gennady A. Ougolnitsky, Anatoly B. Usov, “The sustainable development of the management systems in the conditions of corruption”, Mat. Teor. Igr Pril., 2:4 (2010), 106–119 |
5
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34. |
G. A. Ougolnitsky, A. B. Usov, “Control of sustainable development of hierarchical systems in conditions of corruption”, Probl. Upr., 2010, no. 6, 19–26 |
9
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35. |
G. A. Ugolnitsky, A. B. Usov, “Three-level control systems of the ecologyeconomic objects of the fan structure”, Probl. Upr., 2010, no. 1, 26–32 |
7
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2009 |
36. |
G. A. Ugolnitsky, A. B. Usov, “Control of complex ecological-economic systems”, Avtomat. i Telemekh., 2009, no. 5, 169–179 ; Autom. Remote Control, 70:5 (2009), 897–906 |
13
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2008 |
37. |
A. B. Usov, “Математическая формализация управления устойчивым развитием эколого-экономических систем”, Sib. Zh. Ind. Mat., 11:1 (2008), 122–130 |
38. |
A. B. Usov, “Finite-difference method for the Navier–Stokes equations in a variable domain with curved boundaries”, Zh. Vychisl. Mat. Mat. Fiz., 48:3 (2008), 491–504 ; Comput. Math. Math. Phys., 48:3 (2008), 464–476 |
3
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2007 |
39. |
G. A. Ugolnitsky, A. B. Usov, “Mathematical formalization of hierarchical control methods for environmental-economic systems”, Probl. Upr., 2007, no. 4, 64–69 |
15
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2003 |
40. |
A. B. Usov, “Flow asymptotics of a viscous compressible fluid with discontinuous initial data”, Prikl. Mekh. Tekh. Fiz., 44:2 (2003), 63–71 ; J. Appl. Mech. Tech. Phys., 44:2 (2003), 204–211 |
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1996 |
41. |
A. B. Usov, “Asymptotic behavior of a flow with a free surface”, Prikl. Mekh. Tekh. Fiz., 37:1 (1996), 48–56 ; J. Appl. Mech. Tech. Phys., 37:1 (1996), 41–47 |
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Organisations |
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