Indirect field-oriented control of twin-screw electromechanical hydrolyzer
Goal. Development of a mathematical model of indirect field-oriented control of a twin-screw electromechanical hydrolyzer. Methodology. The paper presents a mathematical model of Indirect field-oriented control of twin-screw electromechanical hydrolyzer. The mathematical model was developed in the M...
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Format: | Article |
Language: | English |
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National Technical University "Kharkiv Polytechnic Institute"
2022-02-01
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Series: | Electrical engineering & Electromechanics |
Subjects: | |
Online Access: | http://eie.khpi.edu.ua/article/view/252816/250266 |
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author | M. M. Zablodskiy V. E. Pliuhin S. I. Kovalchuk V. O. Tietieriev |
author_facet | M. M. Zablodskiy V. E. Pliuhin S. I. Kovalchuk V. O. Tietieriev |
author_sort | M. M. Zablodskiy |
collection | DOAJ |
description | Goal. Development of a mathematical model of indirect field-oriented control of a twin-screw electromechanical hydrolyzer. Methodology. The paper presents a mathematical model of Indirect field-oriented control of twin-screw electromechanical hydrolyzer. The mathematical model was developed in the MATLAB / Simulink software environment. The determination of the main parameters of a twin-screw electromechanical hydrolyzer was carried out by developing a finite element model in the Comsol Multiphysics software environment. Results. Based on the results of a mathematical study, graphical dependences of the distribution of magnetic induction in the air gap of a ferromagnetic rotor, a spatial representation of the distribution of magnetic induction on a 3D model of a ferromagnetic rotor of a twin-screw electromechanical hydrolyzer were obtained. The results of finite element modeling were confirmed by a practical study of a mock-up of a ferromagnetic rotor of a twin-screw electromechanical hydrolyzer. By implementing the MATLAB / Simulink model, graphical dependences of the parameters of the ferromagnetic rotor of a twin-screw electromechanical hydrolyzer are obtained under the condition of a stepwise change in the torque and a cyclic change in the angular velocity. Originality. The paper presents an implementation of the method of indirect field-oriented control for controlling the ferromagnetic rotor of a twin-screw electromechanical hydrolyzer. The work takes into account the complex design of the ferromagnetic rotor of a twin-screw electromechanical hydrolyzer. Practical significance. The practical implementation of the results of mathematical modeling makes it possible to achieve effective control of a complex electromechanical system, allows further research to maintain the necessary parameters of the technological process and to develop more complex intelligent control systems in the future. |
first_indexed | 2024-12-23T23:02:43Z |
format | Article |
id | doaj.art-b109a879f34240e98af7bad8e33584c6 |
institution | Directory Open Access Journal |
issn | 2074-272X 2309-3404 |
language | English |
last_indexed | 2024-12-23T23:02:43Z |
publishDate | 2022-02-01 |
publisher | National Technical University "Kharkiv Polytechnic Institute" |
record_format | Article |
series | Electrical engineering & Electromechanics |
spelling | doaj.art-b109a879f34240e98af7bad8e33584c62022-12-21T17:26:52ZengNational Technical University "Kharkiv Polytechnic Institute"Electrical engineering & Electromechanics2074-272X2309-34042022-02-01131110.20998/2074-272X.2022.1.01Indirect field-oriented control of twin-screw electromechanical hydrolyzerM. M. Zablodskiy0https://orcid.org/0000-0001-8889-8158V. E. Pliuhin1https://orcid.org/0000-0003-4056-9771S. I. Kovalchuk2https://orcid.org/0000-0002-1194-3464V. O. Tietieriev3https://orcid.org/0000-0002-0841-9055National University of Life and Environmental Sciences of Ukraine, UkraineO.M. Beketov National University of Urban Economy on Kharkiv, UkraineNational University of Life and Environmental Sciences of Ukraine, UkraineO.M. Beketov National University of Urban Economy on Kharkiv, UkraineGoal. Development of a mathematical model of indirect field-oriented control of a twin-screw electromechanical hydrolyzer. Methodology. The paper presents a mathematical model of Indirect field-oriented control of twin-screw electromechanical hydrolyzer. The mathematical model was developed in the MATLAB / Simulink software environment. The determination of the main parameters of a twin-screw electromechanical hydrolyzer was carried out by developing a finite element model in the Comsol Multiphysics software environment. Results. Based on the results of a mathematical study, graphical dependences of the distribution of magnetic induction in the air gap of a ferromagnetic rotor, a spatial representation of the distribution of magnetic induction on a 3D model of a ferromagnetic rotor of a twin-screw electromechanical hydrolyzer were obtained. The results of finite element modeling were confirmed by a practical study of a mock-up of a ferromagnetic rotor of a twin-screw electromechanical hydrolyzer. By implementing the MATLAB / Simulink model, graphical dependences of the parameters of the ferromagnetic rotor of a twin-screw electromechanical hydrolyzer are obtained under the condition of a stepwise change in the torque and a cyclic change in the angular velocity. Originality. The paper presents an implementation of the method of indirect field-oriented control for controlling the ferromagnetic rotor of a twin-screw electromechanical hydrolyzer. The work takes into account the complex design of the ferromagnetic rotor of a twin-screw electromechanical hydrolyzer. Practical significance. The practical implementation of the results of mathematical modeling makes it possible to achieve effective control of a complex electromechanical system, allows further research to maintain the necessary parameters of the technological process and to develop more complex intelligent control systems in the future.http://eie.khpi.edu.ua/article/view/252816/250266maxwell's equationsfield-oriented controlpolyfunctional electromechanical convertershydrolyzerdissipative energy |
spellingShingle | M. M. Zablodskiy V. E. Pliuhin S. I. Kovalchuk V. O. Tietieriev Indirect field-oriented control of twin-screw electromechanical hydrolyzer Electrical engineering & Electromechanics maxwell's equations field-oriented control polyfunctional electromechanical converters hydrolyzer dissipative energy |
title | Indirect field-oriented control of twin-screw electromechanical hydrolyzer |
title_full | Indirect field-oriented control of twin-screw electromechanical hydrolyzer |
title_fullStr | Indirect field-oriented control of twin-screw electromechanical hydrolyzer |
title_full_unstemmed | Indirect field-oriented control of twin-screw electromechanical hydrolyzer |
title_short | Indirect field-oriented control of twin-screw electromechanical hydrolyzer |
title_sort | indirect field oriented control of twin screw electromechanical hydrolyzer |
topic | maxwell's equations field-oriented control polyfunctional electromechanical converters hydrolyzer dissipative energy |
url | http://eie.khpi.edu.ua/article/view/252816/250266 |
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