Grid Computing in the Study of Magnetic Levitation Systems

dc.contributor.authorLyashko S.
dc.contributor.authorZub S.
dc.contributor.authorYalovega I.
dc.contributor.authorLyashko N.
dc.description.abstractNumerical modeling of the dynamics and stability investigation of even relatively simple Hamiltonian systems of magnetic levitation requires significant computational resources. In this chapter, the authors consider the application of grid and cloud technologies for numerical simulation of the dynamics of magnetic levitation systems involving a magnetized weakly asymmetric top such as the Orbitron. The importance of geometric integrators for investigating stability over large time intervals in conserved energy systems is noted. The relative equilibrium in the Orbitron is a starting point for choosing the parameters and initial conditions for numerical simulation.
dc.identifier.citationLyashko S. Grid Computing in the Study of Magnetic Levitation Systems / S. Lyashko, S. Zub, I. Yalovega and other // Computational Methods and Mathematical Modeling in Cyberphysics and Engineering Applications 3 – Chapter 5. – 2026. – Pages 127-142.
dc.identifier.urihttps://repository.hneu.edu.ua/handle/123456789/40645
dc.language.isoen
dc.subjectGrid сomputing
dc.subjectnumerical modeling
dc.subjectHamiltonian systems
dc.subjectmagnetic levitation systems
dc.titleGrid Computing in the Study of Magnetic Levitation Systems
dc.typeArticle

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