System-Dynamic Modeling of Network Information Operations
Introduction. Information-technical and information-psychological influences are the main negative factors affecting the information security according to the Information Security Doctrine of the Russian Federation. Therefore, modeling, evaluating and forecasting information influences on social gro...
Main Authors: | , , , |
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Format: | Article |
Language: | English |
Published: |
National Research Mordova State University; MRSU
2019-03-01
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Series: | Инженерные технологии и системы |
Subjects: | |
Online Access: | http://vestnik.mrsu.ru/index.php/en/articles2-en/80-19-1/673-10-15507-0236-2910-029-201901-2 |
Summary: | Introduction. Information-technical and information-psychological influences are the main negative factors affecting the information security according to the Information Security Doctrine of the Russian Federation. Therefore, modeling, evaluating and forecasting information influences on social groups and organizing adequate information counteraction are urgent tasks of management.
Materials and Methods. The system-dynamic models of information influences in social networks and groups are considered. Their application for purposes of counteraction to information terrorism and extremism is proved. The description in the form of flowcharts is given. Systems of differential equations are presented. Experiments with models using the advanced simulation platform Anylogic have been carried out.
Results. In a sample of Russian settlements based on the cluster analysis there have been found homogeneous typological groups that differ in the average time of disseminating information in social networks. Based on Gibbs’s Postulate, the system-dynamic model of information influences on students has been successfully tested.
Discussion and Conclusion. The high consistency of simulation results with empirical data (determination coefficients of at least 90 %) is shown. Models allow forecasting the information influence and information counteraction and playing different scenarios for the dynamics of these processes. |
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ISSN: | 2658-6525 2658-4123 |