A NEW MATHEMATICAL MODEL OF DYNAMIC PROCESSES IN DIRECT CURRENT TRACTION POWER SUPPLY SYSTEM
A new autonomous 4D nonlinear model with two nonlinearities describing the dynamics of change of voltage and current in the contact railway electric network is offered. This model is a connection of two 2D oscillatory circuits for current and voltage in the contact electric network. In the found sys...
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Oles Honchar Dnipro National University
2019-03-01
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Series: | Journal of Optimization, Differential Equations and Their Applications |
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doaj-36a496b955c346eba5b43dfdc33baff42020-11-24T21:26:05ZengOles Honchar Dnipro National UniversityJournal of Optimization, Differential Equations and Their Applications2617-01082663-68242019-03-01271235710.15421/141902125A NEW MATHEMATICAL MODEL OF DYNAMIC PROCESSES IN DIRECT CURRENT TRACTION POWER SUPPLY SYSTEMVasiliy Ye. Belozyorov0Yevhen M. Kosariev1Mykola M. Pulin2Viktor G. Sychenko3Vadym G. Zaytsev4Department of Applied Mathematics, Oles Honchar Dnipro National UniversityDepartment of Intelligent Electric Power Supply Systems, Dnipropetrovsk National University of Railway TransportDepartment of power supply Regional branch "Lvivska zaliznitsia" of "Ukrzaliznytsia"Department of Intelligent Electric Power Supply Systems, Dnipropetrovsk National University of Railway TransportDepartment of Applied Mathematics, Oles Honchar Dnipro National UniversityA new autonomous 4D nonlinear model with two nonlinearities describing the dynamics of change of voltage and current in the contact railway electric network is offered. This model is a connection of two 2D oscillatory circuits for current and voltage in the contact electric network. In the found system for the defined values of parameters an existence of limit cycles is proved. By introduction of new variables this system can be reduced to 5D system only with one quadratic nonlinearity. The constructed model may be used for the control by voltage stability in a direct current power supply system.https://model-dnu.dp.ua/index.php/SM/article/view/133Time seriespolynomial modelschaosfour-dimensional chaotic systemtime-delayed embeddingmultidimensional recurrence quantification analysisvoltage stabilization |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Vasiliy Ye. Belozyorov Yevhen M. Kosariev Mykola M. Pulin Viktor G. Sychenko Vadym G. Zaytsev |
spellingShingle |
Vasiliy Ye. Belozyorov Yevhen M. Kosariev Mykola M. Pulin Viktor G. Sychenko Vadym G. Zaytsev A NEW MATHEMATICAL MODEL OF DYNAMIC PROCESSES IN DIRECT CURRENT TRACTION POWER SUPPLY SYSTEM Journal of Optimization, Differential Equations and Their Applications Time series polynomial models chaos four-dimensional chaotic system time-delayed embedding multidimensional recurrence quantification analysis voltage stabilization |
author_facet |
Vasiliy Ye. Belozyorov Yevhen M. Kosariev Mykola M. Pulin Viktor G. Sychenko Vadym G. Zaytsev |
author_sort |
Vasiliy Ye. Belozyorov |
title |
A NEW MATHEMATICAL MODEL OF DYNAMIC PROCESSES IN DIRECT CURRENT TRACTION POWER SUPPLY SYSTEM |
title_short |
A NEW MATHEMATICAL MODEL OF DYNAMIC PROCESSES IN DIRECT CURRENT TRACTION POWER SUPPLY SYSTEM |
title_full |
A NEW MATHEMATICAL MODEL OF DYNAMIC PROCESSES IN DIRECT CURRENT TRACTION POWER SUPPLY SYSTEM |
title_fullStr |
A NEW MATHEMATICAL MODEL OF DYNAMIC PROCESSES IN DIRECT CURRENT TRACTION POWER SUPPLY SYSTEM |
title_full_unstemmed |
A NEW MATHEMATICAL MODEL OF DYNAMIC PROCESSES IN DIRECT CURRENT TRACTION POWER SUPPLY SYSTEM |
title_sort |
new mathematical model of dynamic processes in direct current traction power supply system |
publisher |
Oles Honchar Dnipro National University |
series |
Journal of Optimization, Differential Equations and Their Applications |
issn |
2617-0108 2663-6824 |
publishDate |
2019-03-01 |
description |
A new autonomous 4D nonlinear model with two nonlinearities describing
the dynamics of change of voltage and current in the contact railway electric network is offered. This model is a connection of two 2D oscillatory circuits for current and voltage in the contact electric network. In the found system for the defined values of parameters an existence of limit cycles is proved. By introduction of new variables this system can be reduced to 5D system only with one quadratic nonlinearity. The constructed model may be used for the control by voltage stability in a direct current power supply system. |
topic |
Time series polynomial models chaos four-dimensional chaotic system time-delayed embedding multidimensional recurrence quantification analysis voltage stabilization |
url |
https://model-dnu.dp.ua/index.php/SM/article/view/133 |
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