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Publications in Math-Net.Ru
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Sustainable development of floodplain territories of regulated rivers. Part II: Designing an effective territory structure management system
Probl. Upr., 2024, no. 1, 57–78
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Sustainable development of floodplain territories of regulated rivers. Part I: Modeling complex structure dynamics
Probl. Upr., 2023, no. 6, 42–55
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Program complex for simulation modeling of hydrotechnical projects in floodplain terrains
Mathematical Physics and Computer Simulation, 21:2 (2018), 59–74
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Optimization and scenario-simulation modelling of the dynamics of the structure of small artificial channels in floodplain areas
Mathematical Physics and Computer Simulation, 20:4 (2017), 26–38
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Adaptation model for operating core of organization
Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2016, no. 4(35), 44–65
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Designing mechanisms of the hydrological regime management of the Volga–Akhtuba floodplain based on geoinformation and hydrodynamic modeling
Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2016, no. 1(32), 24–37
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Designing a system for ecological–economical management of the volga–akhtuba floodplain on basis of hydrodynamic and geoinformational simulation
UBS, 55 (2015), 79–102
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Cognitive analysis and scenario-simulation modeling of the ecological and economic situation in northern part of the Volga–Akhtuba floodplain
Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2015, no. 6(31), 17–30
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Efficiency analysis for nature restoration projects in ecologo-economic system of volga hpp and volga-akhtuba floodplain
UBS, 52 (2014), 133–147
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What sort of efficiency russian science needs
UBS, 44 (2013), 56–66
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The regimen control task in the eco-economic system “Volzhskaya hydroelectric power station – the Volga-Akhtuba floodplain”. II. Synthesis of control system
Probl. Upr., 2012, no. 6, 19–25
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The regimen control task in the eco-economic system “Volzhskaya hydroelectric power station – the Volga-Akhtuba floodplain”. I. Simulation of dynamics of surface water during spring floods
Probl. Upr., 2012, no. 5, 18–25
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Ñonstrained optimization model of organization`s operating core
UBS, 39 (2012), 165–183
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A Model of Optimal Control of Structural Changes in an Organizational System
Avtomat. i Telemekh., 2002, no. 8, 136–150
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Algorithms to Seek the Optimal Structure of the Organizational System
Avtomat. i Telemekh., 2002, no. 5, 120–132
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Asymptotic properties of solutions of ordinary differential equations with a large parameter
Izv. Vyssh. Uchebn. Zaved. Mat., 1998, no. 7, 3–10
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Asymptotic properties of solutions of singularly perturbed ODEs
Mat. Model., 7:5 (1995), 70
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Evolution of Simplicity
Math. Ed., 2006, no. 1(36), 57–68
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Stable Development: Myth or Reality?
Math. Ed., 2000, no. 1(12), 59–67
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