Assessing the Similarity of Atoms' Thermal Motion Behavior by Swarm Agents

Eduard A. Heiss, Oleg O. Morozov, Andrey G. Efromeev · 2022 4th International Conference on Control Systems, Mathematical Modeling, Automation and Energy Efficiency (SUMMA) · 2022

Previously published works present the motion organizing method of swarm agents, called the thermal equivalent motion method. Its brief description is represented in this paper. This paper presents the results of the distribution of swarm agents by speed at the equivalent thermodynamic equilibrium state. The obtained data give a high correlation degree with the theoretical conclusions according to the Pearson criterion. The result of swarm simulation when the volume of the admissible region changes is presented. It agrees with the conclusions of the Mendeleev-Clapeyron equation. It is shown that neither the swarm agents' number nor the agent's short interaction radius changes have effect on the average speed of swarm agents. Analysis of the results shows that the swarm agents' behavior is similar to the atoms' thermal motion.

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