Differential Evolution in Problems Optimal Parameters Search for Population-Migration Models

The use of computer methods, methods of intellectual analysis and optimization methods for the study of population dynamic models with migration flows is an urgent direction. The use of these methods makes it possible to model complex processes and systems, the study of which by analytical methods i...

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Main Authors: Olga Druzhinina, Olga Masina, Irina Vasilyeva
Format: Article
Language:Russian
Published: The Fund for Promotion of Internet media, IT education, human development «League Internet Media» 2024-03-01
Series:Современные информационные технологии и IT-образование
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Online Access:https://sitito.cs.msu.ru/index.php/SITITO/article/view/1021
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author Olga Druzhinina
Olga Masina
Irina Vasilyeva
author_facet Olga Druzhinina
Olga Masina
Irina Vasilyeva
author_sort Olga Druzhinina
collection DOAJ
description The use of computer methods, methods of intellectual analysis and optimization methods for the study of population dynamic models with migration flows is an urgent direction. The use of these methods makes it possible to model complex processes and systems, the study of which by analytical methods is difficult. In this paper, the issues related to the application of the differential evolution method in the problems of modeling population-migration dynamic systems are considered. The population model "two competitors – one migration area" and its modifications are studied. The modeling of the processes of interaction of species in conditions of competition and migration flows is carried out. A series of computer experiments are performed, trajectory dynamics is studied, projections of phase portraits are constructed, qualitative effects are identified and a comparative analysis of the obtained results for such modifications of the "two competitors – one migration area" model, which are associated with variability in the coefficients of natural reproduction of species, intraspecific and interspecific competition, and migration rates. The obtained results can be used in solving problems of global parametric optimization, computer modeling of multidimensional ecological systems, as well as problems of predicting behavior in chemical kinetics systems, and in describing demographic processes.
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issn 2411-1473
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publishDate 2024-03-01
publisher The Fund for Promotion of Internet media, IT education, human development «League Internet Media»
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series Современные информационные технологии и IT-образование
spelling doaj-art-42e838253c144742a7a84f44732024a72025-08-20T02:50:02ZrusThe Fund for Promotion of Internet media, IT education, human development «League Internet Media»Современные информационные технологии и IT-образование2411-14732024-03-01201586910.25559/SITITO.020.202401.58-69Differential Evolution in Problems Optimal Parameters Search for Population-Migration ModelsOlga Druzhinina0https://orcid.org/0000-0002-9242-9730Olga Masina1https://orcid.org/0000-0002-0934-7217Irina Vasilyeva2https://orcid.org/0000-0002-4120-2595Federal Research Center Computer Science and Control of Russian Academy of Sciences, Moscow, RussiaBunin Yelets State University, Yelets, RussiaBunin Yelets State University, Yelets, RussiaThe use of computer methods, methods of intellectual analysis and optimization methods for the study of population dynamic models with migration flows is an urgent direction. The use of these methods makes it possible to model complex processes and systems, the study of which by analytical methods is difficult. In this paper, the issues related to the application of the differential evolution method in the problems of modeling population-migration dynamic systems are considered. The population model "two competitors – one migration area" and its modifications are studied. The modeling of the processes of interaction of species in conditions of competition and migration flows is carried out. A series of computer experiments are performed, trajectory dynamics is studied, projections of phase portraits are constructed, qualitative effects are identified and a comparative analysis of the obtained results for such modifications of the "two competitors – one migration area" model, which are associated with variability in the coefficients of natural reproduction of species, intraspecific and interspecific competition, and migration rates. The obtained results can be used in solving problems of global parametric optimization, computer modeling of multidimensional ecological systems, as well as problems of predicting behavior in chemical kinetics systems, and in describing demographic processes.https://sitito.cs.msu.ru/index.php/SITITO/article/view/1021optimization methodsdifferential evolutiondynamic population modelcompetitionmigrationtrajectory dynamicsintelligent technologies
spellingShingle Olga Druzhinina
Olga Masina
Irina Vasilyeva
Differential Evolution in Problems Optimal Parameters Search for Population-Migration Models
Современные информационные технологии и IT-образование
optimization methods
differential evolution
dynamic population model
competition
migration
trajectory dynamics
intelligent technologies
title Differential Evolution in Problems Optimal Parameters Search for Population-Migration Models
title_full Differential Evolution in Problems Optimal Parameters Search for Population-Migration Models
title_fullStr Differential Evolution in Problems Optimal Parameters Search for Population-Migration Models
title_full_unstemmed Differential Evolution in Problems Optimal Parameters Search for Population-Migration Models
title_short Differential Evolution in Problems Optimal Parameters Search for Population-Migration Models
title_sort differential evolution in problems optimal parameters search for population migration models
topic optimization methods
differential evolution
dynamic population model
competition
migration
trajectory dynamics
intelligent technologies
url https://sitito.cs.msu.ru/index.php/SITITO/article/view/1021
work_keys_str_mv AT olgadruzhinina differentialevolutioninproblemsoptimalparameterssearchforpopulationmigrationmodels
AT olgamasina differentialevolutioninproblemsoptimalparameterssearchforpopulationmigrationmodels
AT irinavasilyeva differentialevolutioninproblemsoptimalparameterssearchforpopulationmigrationmodels