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Formalization of the Burning Process of Virtual Reality Objects in Adaptive Training Complexes
Mikhail Krasnyanskiy1, Artem Obukhov2, Denis Dedov3
1Department of Administration, Tambov State Technical University, 392000 Tambov, Russia.
Journal of Imaging
|August 30, 2021
Summary
This study introduces an adapted mathematical model for formalizing virtual object burning in adaptive training complexes. This approach simplifies complex calculations, enhancing efficiency and reducing costs in virtual and augmented reality simulators.
Area of Science:
- Computer Science
- Simulation and Modeling
- Virtual Reality
Background:
- Existing mathematical models for physical processes like burning are not optimized for adaptive training complexes.
- Complexity of current models leads to increased costs and reduced productivity in training simulations.
Purpose of the Study:
- To develop an adapted mathematical model for formalizing the physical processes of virtual object burning.
- To enable efficient implementation of complex physical phenomena in adaptive training environments.
Main Methods:
- Formalization of virtual object structure, properties, and state changes during burning.
- Utilizing threshold value diagrams and state-change rules for virtual reality objects.
- Applying the model to scenarios from flame development to complete destruction or extinguishment.
Main Results:
- A novel mathematical model that accurately formalizes virtual burning processes.
- Demonstrated applicability to various physical phenomena including smoke and toxic gas spread.
- Successful integration into virtual and augmented reality simulators.
Conclusions:
- The proposed formalization approach enhances the efficiency and cost-effectiveness of adaptive training complexes.
- The methodology is versatile and can be applied to a wide range of physical processes in simulators.
- This research supports the development of advanced training for professional ergatic systems.

