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Vibrations in engineering and technology

space SCIENTIFIC JOURNALS OF VINNITSA NATIONAL AGRARIAN UNIVERSITY

Issue №: 1(112)

Published: 2024.04.22
DOI: 10.37128/2306-8744-2024-1


Description:
The journal deals with the problems of vibration technologies and machines, mathematical methods of vibration process studies, information on design and technological development, presents teaching and methodological aspects of teaching in the Higher School of Applied Sciences, where vibration machines and technologies are studied.

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COMPUTER SIMULATION OF THE DIAGNOSTIC SYSTEM OF BRAKING CIRCUITS OF FREQUENCY-CONTROLLED ASYNCHRONOUS ELECTRIC DRIVES CONVERTERS

DOI: 10.37128/2306-8744-2024-1-7
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Hrabko Volodymyr – Doctor of Technical Sciences professor of the Vinnytsia National Technical University (95 Khmelnytske Shosse St., Vinnytsia, 21000, Ukraine)

Bartetskyi Andrii – Ph.D., senior lecturer of the Department of Power Engineering, Electrical Engineering and Electromechanics of the Vinnytsia National Agrarian University (Sonyachna St., 3, Vinnytsia, 21008, Ukraine).

Chmykh Kateryna – postgraduate student at the Vinnytsia National Agrarian University (Sonyachna St., 3, Vinnytsia, 21008, Ukraine, e-mail: catherina099@gmail.com)

 

Annotation

This research is essential for improving the reliability and efficiency of frequency-controlled asynchronous electric drives, especially in industrial environments where uninterrupted production processes are critical. The primary goal of the research is to develop a computer model for a brake system diagnostic system that allows for the timely detection of issues and failures in these systems.

One of the key aspects of your research is the use of computer modeling, particularly in the MatLab Simulink environment. This enables engineers and researchers to more easily develop and test models, reducing research time and costs. An important element of such a model is the use of logic-time functions and wavelet diagnostics. These methods allow for the analysis of signals from brake systems from different perspectives and the detection of anomalies in their operation.

The research also focuses on mathematical models of brake systems that are integrated into computer programs for simulating the operation of electric drives. Analyzing critical parameters and characteristics of brake circuits helps identify potential problems or failures in advance. Diagnostic algorithms based on data obtained from computer models enable the timely determination of the brake system's condition and the necessary decision-making to enhance safety and efficiency in electric drive operation.

The results obtained from your research have significant practical importance as they help maintain the reliability and safety of industrial systems at a high level. Brake system diagnostics in frequency-controlled asynchronous electric drives become more accessible and efficient through the use of mathematical models and computer modeling in MatLab Simulink. This contributes to increased productivity and reduced risk of accidents in industrial systems.

 

Keywords: electric drive, brake systems, computer models, MatLab Simulink, modeling

List of references

1. Shaikh, J. (2016). A Guide to MATLAB: For Beginners and Experienced Users. Peshawar: University of Peshawar Press. [USA]

2. Karris, S. T. (2006). Introduction to Simulink with Engineering Applications. Orchard Publications. [USA]

3. Nise N. S. (2011). Control Systems Engineering. (P. 135). [USA]

4. Horodnichy A., Snizhko M. (2015). Navch. Pos Modeliuvannia Asynkhronnykh System. NTUU KPI. [Ukraine]

5. Chornyi I. M. (2012). Modeliuvannia Elektromekhanichnykh System u Seredovyschi MATLAB Simulink. Nizhyn. [Ukraine]

6. Tereshchuk, V. S., Tereshchuk O. V. (2015). Osnovni vymohy do asynkhronnykh elektropryvodiv vysokoi potuzhnosti z chastotnym keruvanniam. Materialy Vseukrainskoi naukovo-praktychnoi konferentsii, 20-36. [Ukraine]

7. Figaro B. I.,  Pavlyachik, L. B. (2006). Regulating Electrical Drives of Alternating-Current. Minsk: Technoperspectiva. (P. 363). [Beloruss]

8. Sokolovsky G. G. (2006). Electric Drives of Alternating Current with Frequency Regulation. ACADEMIA. (P. 267). [Ukraine]

9. Usoltsev A. A., Vorobyov N. V., Feshin B. N. (2014). Methodology for the Analysis of Electromagnets of Processes in Subsystems of an Automated Electric Drive. Automation and Informatics, 2(35), 50-53. [Ukraine]

10. Usoltsev A. A. (2008). Determination of the Parameters of the Asynchronous Motor Model According to the Reference Data. News of Universities. Instrument Making, 51(10), 35-41. [Ukraine]

11. Ilyina A. G., Usoltsev A. A. (2008). Optimal Motion Control During Positioning and Its Modeling in the MathLab Simulink Environment. Instrument Making, 51(6), 63-68. [Ukraine]

12. Hoang Le-Huy. Modeling and Simulation of Electrical Drives Using MATLAB Simulink. [USA]

13. Hrabko V. V., Levytskyi S. M., Bartetskyi A. A. (2016). Application of logic-time functions in the task of diagnosing brakes of frequency-controlled asynchronous electric drives. Electromechanical and Energy-Saving Systems, 1, 25-31. [Ukraine]

14. Hrabko V. V., Levytskyi S. M., Bartetskyi A. A. (2015). Wavelet diagnosis of brakes of frequency-controlled asynchronous electric drives. Bulletin of Kremenchuk National University named after Mykhailo Ostrohradsky, 1, 9-13. [Ukraine]

 

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About the journal

Topics of the journal:

The journal "Vibrations in Engineering and Technologies" is included in the list of technical scientific publications of Ukraine

(Category "B", Order of the Ministry of Education and Science of Ukraine dated July 2, 2020 No. 886)

Old version of the site: http://vibrojournal.vsau.edu.ua/

The journal "Vibrations in Engineering and Technology" is indexed by the following databases and catalogs:

 

 

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Key information:
ISSN (print): 2306-8744
DOI: 10.37128/2306-8744

The certificateof massmedia State registration:kv no 16643-5115 from 30.04.2010 .
Founder of the journal: Vinnytsia National Agrarian University

The journal is devoted to highlighting current issues in engineering, mechanical engineering, and technological processes, including the study of dynamic and oscillatory phenomena in technical systems, the application of mathematical methods for process modeling and analysis, as well as the presentation of results of design-engineering and technological developments. Particular attention is given to the study of vibration processes and their application in modern technologies.

The purpose of the scientific journal “Vibrations in Engineering and Technologies” is to disseminate the results of fundamental and applied research in the field of engineering sciences aimed at developing theoretical foundations and practical approaches to the design, analysis, and improvement of machines, materials, and technological processes, including the use of vibration and oscillatory effects in various sectors of production.

The publication is focused on the formation of a modern scientific and informational environment for the effective exchange of research results, support of innovative development, and implementation of advanced technical solutions in industry, agro-industrial production, and related fields.

The journal promotes the development of interdisciplinary research, the integration of modern engineering approaches, and the enhancement of the efficiency of technological processes and technical systems, including through the rational use of vibration phenomena.

Objectives of the Scientific Journal

To achieve its stated purpose, the journal addresses the following key objectives:

dissemination of results of fundamental and applied scientific research in the fields of mechanics, mechanical engineering, technological processes, machine dynamics, and equipment, as well as in areas related to the application of vibration phenomena in engineering and technologies;

promotion of research aimed at the creation and improvement of machines, mechanisms, and technological equipment based on oscillatory and vibration processes;

support for the implementation of modern technological solutions focused on improving productivity, energy efficiency, and reliability of technical systems;

обеспечение scientific exchange of research results among research institutions, higher education establishments, and industrial enterprises;

development of interdisciplinary cooperation among researchers in the fields of mechanics, materials science, material processing technologies, and automation of technological processes;

dissemination of modern scientific achievements and advanced technologies related to the application of vibration processes in production and technical systems.

Publisher Vinnytsia National Agrarian University

History of journal:

In June 1994 the 2nd International Scientific and Technical Conference "Application of vibrations for technological purposes" was organized on the basis of Vinnytsia State Agricultural Institute. Leading experts in this field, noting the significant contribution to the school of Vibration Engineering under the leadership of P. S. Bernyk, proposed to create a professional all-Ukrainian scientific and technical journal "Vibration in engineering and technology..The journal was foundedat Vinnytsia State Agricultural Institute and P.S. Bernyk was elected to be the chief editor .
For all these years (since 1994) theJournal "vibration in engineering and technology" published  119 issues wherestudy of vibration effects, the creation of progressive energy saving technologies and equipment for their implementation were highlighted.
Currently Ihor Kupchuk, Candidate of Technical Sciences, Associate professor, Associate Professor of the Department of Engineering Mechanics and Technological Processes in the Agricultural Industry Faculty of Engineering and Technology Vinnytsia National Agrarian University is the chief editor of the "Vibrations in engineering  and Technology"

The journal "Vibration in Engineering and technology", which has no analogues on the territory of Ukraine, is well known abroad.