MATHEMATICAL MODELING OF AC ELECTRIC POINT MOTOR

Purpose. In order to ensure reliability, security, and the most important the continuity of the transportation process, it is necessary to develop, implement, and then improve the automated methods of diagnostic mechanisms, devices and rail transport systems. Only systems that operate in real time m...

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Main Author: S. YU. Buryak
Format: Article
Language:English
Published: Dnipro National University of Railway Transport named after Academician V. Lazaryan 2014-03-01
Series:Nauka ta progres transportu
Subjects:
Online Access:http://stp.diit.edu.ua/article/view/23740/21917
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spelling doaj-7e1f3cde59b44f43abcf7a793f80dd8b2020-11-25T03:48:33Zeng Dnipro National University of Railway Transport named after Academician V. LazaryanNauka ta progres transportu2307-34892307-66662014-03-01502720MATHEMATICAL MODELING OF AC ELECTRIC POINT MOTORS. YU. Buryak0Dep. «Automation, Telemechanics and Communications», Dnipropetrovsk National University of Railway Transport named after Academician V. Lazaryan, Lazaryan St. 2, Dnipropetrovsk, Ukraine, 49010, tel.+38 (056) 373 15 04, e-mail bsyur@mail.ru, UkrainePurpose. In order to ensure reliability, security, and the most important the continuity of the transportation process, it is necessary to develop, implement, and then improve the automated methods of diagnostic mechanisms, devices and rail transport systems. Only systems that operate in real time mode and transmit data on the instantaneous state of the control objects can timely detect any faults and thus provide additional time for their correction by railway employees. Turnouts are one of the most important and responsible components, and therefore require the development and implementation of such diagnostics system.Methodology. Achieving the goal of monitoring and control of railway automation objects in real time is possible only with the use of an automated process of the objects state diagnosing. For this we need to know the diagnostic features of a control object, which determine its state at any given time. The most rational way of remote diagnostics is the shape and current spectrum analysis that flows in the power circuits of railway automatics. Turnouts include electric motors, which are powered by electric circuits, and the shape of the current curve depends on both the condition of the electric motor, and the conditions of the turnout maintenance. Findings. For the research and analysis of AC electric point motor it was developed its mathematical model. The calculation of parameters and interdependencies between the main factors affecting the operation of the asynchronous machine was conducted. The results of the model operation in the form of time dependences of the waveform curves of current on the load on engine shaft were obtained. Originality. During simulation the model of AC electric point motor, which satisfies the conditions of adequacy was built. Practical value. On the basis of the constructed model we can study the AC motor in various mode of operation, record and analyze current curve, as a response to various changes of the load on engine shaft.http://stp.diit.edu.ua/article/view/23740/21917mathematical modelingelectric motorsturnoutelectric driverailway automationautomated diagnostics
collection DOAJ
language English
format Article
sources DOAJ
author S. YU. Buryak
spellingShingle S. YU. Buryak
MATHEMATICAL MODELING OF AC ELECTRIC POINT MOTOR
Nauka ta progres transportu
mathematical modeling
electric motors
turnout
electric drive
railway automation
automated diagnostics
author_facet S. YU. Buryak
author_sort S. YU. Buryak
title MATHEMATICAL MODELING OF AC ELECTRIC POINT MOTOR
title_short MATHEMATICAL MODELING OF AC ELECTRIC POINT MOTOR
title_full MATHEMATICAL MODELING OF AC ELECTRIC POINT MOTOR
title_fullStr MATHEMATICAL MODELING OF AC ELECTRIC POINT MOTOR
title_full_unstemmed MATHEMATICAL MODELING OF AC ELECTRIC POINT MOTOR
title_sort mathematical modeling of ac electric point motor
publisher Dnipro National University of Railway Transport named after Academician V. Lazaryan
series Nauka ta progres transportu
issn 2307-3489
2307-6666
publishDate 2014-03-01
description Purpose. In order to ensure reliability, security, and the most important the continuity of the transportation process, it is necessary to develop, implement, and then improve the automated methods of diagnostic mechanisms, devices and rail transport systems. Only systems that operate in real time mode and transmit data on the instantaneous state of the control objects can timely detect any faults and thus provide additional time for their correction by railway employees. Turnouts are one of the most important and responsible components, and therefore require the development and implementation of such diagnostics system.Methodology. Achieving the goal of monitoring and control of railway automation objects in real time is possible only with the use of an automated process of the objects state diagnosing. For this we need to know the diagnostic features of a control object, which determine its state at any given time. The most rational way of remote diagnostics is the shape and current spectrum analysis that flows in the power circuits of railway automatics. Turnouts include electric motors, which are powered by electric circuits, and the shape of the current curve depends on both the condition of the electric motor, and the conditions of the turnout maintenance. Findings. For the research and analysis of AC electric point motor it was developed its mathematical model. The calculation of parameters and interdependencies between the main factors affecting the operation of the asynchronous machine was conducted. The results of the model operation in the form of time dependences of the waveform curves of current on the load on engine shaft were obtained. Originality. During simulation the model of AC electric point motor, which satisfies the conditions of adequacy was built. Practical value. On the basis of the constructed model we can study the AC motor in various mode of operation, record and analyze current curve, as a response to various changes of the load on engine shaft.
topic mathematical modeling
electric motors
turnout
electric drive
railway automation
automated diagnostics
url http://stp.diit.edu.ua/article/view/23740/21917
work_keys_str_mv AT syuburyak mathematicalmodelingofacelectricpointmotor
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