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Chaos, synchronization and structures in dynamics of systems with cylindrical phase space

This book develops analytical methods for studying the dynamical chaos, synchronization, and dynamics of structures in various models of coupled rotators. Rotators and their systems are defined in a cylindrical phase space, and, unlike oscillators, which are defined in Rn, they have a wider “range”...

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Detalles Bibliográficos
Autores principales: Verichev, Nikolai, Verichev, Stanislav, Erofeev, Vladimir
Lenguaje:eng
Publicado: Springer 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-030-36103-7
http://cds.cern.ch/record/2706770
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author Verichev, Nikolai
Verichev, Stanislav
Erofeev, Vladimir
author_facet Verichev, Nikolai
Verichev, Stanislav
Erofeev, Vladimir
author_sort Verichev, Nikolai
collection CERN
description This book develops analytical methods for studying the dynamical chaos, synchronization, and dynamics of structures in various models of coupled rotators. Rotators and their systems are defined in a cylindrical phase space, and, unlike oscillators, which are defined in Rn, they have a wider “range” of motion: There are vibrational and rotational types for cyclic variables, as well as their combinations (rotational-vibrational) if the number of cyclic variables is more than one. The specificity of rotator phase space poses serious challenges in terms of selecting methods for studying the dynamics of related systems. The book chiefly focuses on developing a modified form of the method of averaging, which can be used to study the dynamics of rotators. In general, the book uses the “language” of the qualitative theory of differential equations, point mappings, and the theory of bifurcations, which helps authors to obtain new results on dynamical chaos in systems with few degrees of freedom. In addition, a special section is devoted to the study and classification of dynamic structures that can occur in systems with a large number of interconnected objects, i.e. in lattices of rotators and/or oscillators. Given its scope and format, the book can be used both in lectures and courses on nonlinear dynamics, and in specialized courses on the development and operation of relevant systems that can be represented by a large number of various practical systems: interconnected grids of various mechanical systems, various types of networks including not only mechanical but also biological systems, etc. .
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spelling cern-27067702021-04-21T18:11:44Zdoi:10.1007/978-3-030-36103-7http://cds.cern.ch/record/2706770engVerichev, NikolaiVerichev, StanislavErofeev, VladimirChaos, synchronization and structures in dynamics of systems with cylindrical phase spaceOther Fields of PhysicsThis book develops analytical methods for studying the dynamical chaos, synchronization, and dynamics of structures in various models of coupled rotators. Rotators and their systems are defined in a cylindrical phase space, and, unlike oscillators, which are defined in Rn, they have a wider “range” of motion: There are vibrational and rotational types for cyclic variables, as well as their combinations (rotational-vibrational) if the number of cyclic variables is more than one. The specificity of rotator phase space poses serious challenges in terms of selecting methods for studying the dynamics of related systems. The book chiefly focuses on developing a modified form of the method of averaging, which can be used to study the dynamics of rotators. In general, the book uses the “language” of the qualitative theory of differential equations, point mappings, and the theory of bifurcations, which helps authors to obtain new results on dynamical chaos in systems with few degrees of freedom. In addition, a special section is devoted to the study and classification of dynamic structures that can occur in systems with a large number of interconnected objects, i.e. in lattices of rotators and/or oscillators. Given its scope and format, the book can be used both in lectures and courses on nonlinear dynamics, and in specialized courses on the development and operation of relevant systems that can be represented by a large number of various practical systems: interconnected grids of various mechanical systems, various types of networks including not only mechanical but also biological systems, etc. .Springeroai:cds.cern.ch:27067702020
spellingShingle Other Fields of Physics
Verichev, Nikolai
Verichev, Stanislav
Erofeev, Vladimir
Chaos, synchronization and structures in dynamics of systems with cylindrical phase space
title Chaos, synchronization and structures in dynamics of systems with cylindrical phase space
title_full Chaos, synchronization and structures in dynamics of systems with cylindrical phase space
title_fullStr Chaos, synchronization and structures in dynamics of systems with cylindrical phase space
title_full_unstemmed Chaos, synchronization and structures in dynamics of systems with cylindrical phase space
title_short Chaos, synchronization and structures in dynamics of systems with cylindrical phase space
title_sort chaos, synchronization and structures in dynamics of systems with cylindrical phase space
topic Other Fields of Physics
url https://dx.doi.org/10.1007/978-3-030-36103-7
http://cds.cern.ch/record/2706770
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