A. Yu. Perevaryukha, “Physical Principles for the Models of Cognitive Chain Reactions and Activity Manipulation Scenarios in Communication Networks”, Tech. Phys., 71:4 (2026), 167
A. Yu. Perevaryukha, “Modeling of Transformations of Biophysical Processes in the Caspian Sea by Wave Equations with Perturbed Delay”, Tech. Phys., 2025
A. Yu. Perevaryukha, “Modeling of the Epidemic and Pulsating Biophysical Wave Processes Based on Hybrid Computing Structures”, Tech. Phys. Lett., 51:1 (2025), 21
A. Yu. Perevaryukha, “Modeling of the Collapse Effect in Biophysical Processes with Trigger Logic of the Decisions in Impact Control”, Tech. Phys., 2025
A. Yu. Perevaryukha, “Modeling Scenarios of Local Epidemics during the Crisis Transformation of Social Network Communications”, Tech. Phys. Lett., 51:6 (2025), 249
A. Yu. Perevaryukha, “Aleatoric Models of the Domino Effect in Information Space for Induced Chain Reaction in Interpersonal Communications”, Tech. Phys., 70:11 (2025), 519
A. Yu. Perevaryukha, “Modeling Threshold Effects of Information Processes in Social Networks with Induced Atypical Group Behavior”, Autom Remote Control, 86:1-4 (2025), 59
A. Yu. Perevaryukha, “Modeling Unstable Critical States and Activity Waves in Social Network Communications”, J. Commun. Technol. Electron., 70:10-12 (2025), 777
A. Yu. Perevaryukha, “A Method for Modeling the Transformation of Epidemic Scenarios during the Propagation of Waves of Convergent SARS-CoV-2 Variants”, Tech. Phys., 69:10 (2024), 2551
A. Yu. Perevaryukha, “Modeling Trigger Evolution in Biophysical Invasions Based on the Situational Choice of Hybrid Computing”, Tech. Phys. Lett., 50:3 (2024), 391