Brushless valve electric drive with minimum equipment excess for autonomous floating vehicle

Purpose. Development of a brushless valve electric drive with a minimum apparatus excess for an autonomous floating vehicle. Methodology. The construction of models of an automated electric drive with a contactless DC motor and the subsequent technical implementation of such automated electric dri...

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Published in:Електротехніка і електромеханіка
Date:2017
Main Authors: Volyanskaya, Ya.B., Volyanskiy, S.M., Onischenko, O.A.
Format: Article
Language:English
Published: Інститут технічних проблем магнетизму НАН України 2017
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Online Access:https://nasplib.isofts.kiev.ua/handle/123456789/147578
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Journal Title:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Cite this:Brushless valve electric drive with minimum equipment excess for autonomous floating vehicle / Ya.B. Volyanskaya, S.M. Volyanskiy, O.A. Onischenko // Електротехніка і електромеханіка. — 2017. — № 4. — С. 26-33. — Бібліогр.: 20 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
id nasplib_isofts_kiev_ua-123456789-147578
record_format dspace
spelling Volyanskaya, Ya.B.
Volyanskiy, S.M.
Onischenko, O.A.
2019-02-15T10:13:33Z
2019-02-15T10:13:33Z
2017
Brushless valve electric drive with minimum equipment excess for autonomous floating vehicle / Ya.B. Volyanskaya, S.M. Volyanskiy, O.A. Onischenko // Електротехніка і електромеханіка. — 2017. — № 4. — С. 26-33. — Бібліогр.: 20 назв. — англ.
2074-272X
DOI: https://doi.org/10.20998/2074-272X.2017.4.05
https://nasplib.isofts.kiev.ua/handle/123456789/147578
62-83:629.584
Purpose. Development of a brushless valve electric drive with a minimum apparatus excess for an autonomous floating vehicle. Methodology. The construction of models of an automated electric drive with a contactless DC motor and the subsequent technical implementation of such automated electric drive under various control methods are possible using coordinate transformations of differential equations describing the electric motor under the assumed assumptions. Results. The analysis of the current state of an automated electric drive with a brushless DC motor in a special technique is carried out, possible directions for the improvement of automated electric drives are determined. A simple technical solution of an automated electric drive with a brushless DC motor was proposed and its mathematical model for an electric drive of an automatic floating vehicle with improved technical and economic parameters was developed. Model of an automated electric drive with a brushless DC motor are carried out. Originality. A simple technical solution for the construction of an automated electric drive with a brushless DC motor is proposed, which excludes the use of intermediate computation of coordinates and an expensive encoder. Practical value. Model of the proposed scheme of an automated electric drive with a minimum hardware redundancy, which confirmed the operability of the proposed solution, were carried out. Analysis of the dynamic and static characteristics of the proposed scheme of an automated asynchronous electric drive with a brushless DC motor with a simplified rotor position sensor has made it possible to determine the maximum speed control range with an allowable level of its pulsations.
Предложено простое схемотехническое решение построения автоматизированного электропривода (АЭП) с бесконтактным двигателем постоянного тока (БДПТ), отличающееся исключением промежуточных программноаппаратных преобразований координат, широтно-импульсного модулятора, двух регуляторов тока и высокоразрядного энкодера. Проведено компьютерное моделирование предложенной модификации АЭП с БДПТ и показана его работоспособность в заданных диапазонах регулирования скорости. На основании результатов моделирования АЭП с БДПТ обоснована возможность его применения в автономных плавательных аппаратах.
en
Інститут технічних проблем магнетизму НАН України
Електротехніка і електромеханіка
Електротехнічні комплекси та системи. Силова електроніка
Brushless valve electric drive with minimum equipment excess for autonomous floating vehicle
Article
published earlier
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
title Brushless valve electric drive with minimum equipment excess for autonomous floating vehicle
spellingShingle Brushless valve electric drive with minimum equipment excess for autonomous floating vehicle
Volyanskaya, Ya.B.
Volyanskiy, S.M.
Onischenko, O.A.
Електротехнічні комплекси та системи. Силова електроніка
title_short Brushless valve electric drive with minimum equipment excess for autonomous floating vehicle
title_full Brushless valve electric drive with minimum equipment excess for autonomous floating vehicle
title_fullStr Brushless valve electric drive with minimum equipment excess for autonomous floating vehicle
title_full_unstemmed Brushless valve electric drive with minimum equipment excess for autonomous floating vehicle
title_sort brushless valve electric drive with minimum equipment excess for autonomous floating vehicle
author Volyanskaya, Ya.B.
Volyanskiy, S.M.
Onischenko, O.A.
author_facet Volyanskaya, Ya.B.
Volyanskiy, S.M.
Onischenko, O.A.
topic Електротехнічні комплекси та системи. Силова електроніка
topic_facet Електротехнічні комплекси та системи. Силова електроніка
publishDate 2017
language English
container_title Електротехніка і електромеханіка
publisher Інститут технічних проблем магнетизму НАН України
format Article
description Purpose. Development of a brushless valve electric drive with a minimum apparatus excess for an autonomous floating vehicle. Methodology. The construction of models of an automated electric drive with a contactless DC motor and the subsequent technical implementation of such automated electric drive under various control methods are possible using coordinate transformations of differential equations describing the electric motor under the assumed assumptions. Results. The analysis of the current state of an automated electric drive with a brushless DC motor in a special technique is carried out, possible directions for the improvement of automated electric drives are determined. A simple technical solution of an automated electric drive with a brushless DC motor was proposed and its mathematical model for an electric drive of an automatic floating vehicle with improved technical and economic parameters was developed. Model of an automated electric drive with a brushless DC motor are carried out. Originality. A simple technical solution for the construction of an automated electric drive with a brushless DC motor is proposed, which excludes the use of intermediate computation of coordinates and an expensive encoder. Practical value. Model of the proposed scheme of an automated electric drive with a minimum hardware redundancy, which confirmed the operability of the proposed solution, were carried out. Analysis of the dynamic and static characteristics of the proposed scheme of an automated asynchronous electric drive with a brushless DC motor with a simplified rotor position sensor has made it possible to determine the maximum speed control range with an allowable level of its pulsations. Предложено простое схемотехническое решение построения автоматизированного электропривода (АЭП) с бесконтактным двигателем постоянного тока (БДПТ), отличающееся исключением промежуточных программноаппаратных преобразований координат, широтно-импульсного модулятора, двух регуляторов тока и высокоразрядного энкодера. Проведено компьютерное моделирование предложенной модификации АЭП с БДПТ и показана его работоспособность в заданных диапазонах регулирования скорости. На основании результатов моделирования АЭП с БДПТ обоснована возможность его применения в автономных плавательных аппаратах.
issn 2074-272X
url https://nasplib.isofts.kiev.ua/handle/123456789/147578
citation_txt Brushless valve electric drive with minimum equipment excess for autonomous floating vehicle / Ya.B. Volyanskaya, S.M. Volyanskiy, O.A. Onischenko // Електротехніка і електромеханіка. — 2017. — № 4. — С. 26-33. — Бібліогр.: 20 назв. — англ.
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