Guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises

Purpose. The problem of resonance phenomena in power systems of industrial enterprises using capacitor banks for reactive power compensation was detected. Circuit of the capacitor banks tier to downshift main substation tires is present. But there is no common algorithm to calculate and avoid such...

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Видавець:Інститут технічних проблем магнетизму НАН України
Дата:2016
Автори: Gapon, D.A., Bederak, Ya.S.
Формат: Стаття
Мова:English
Опубліковано: Інститут технічних проблем магнетизму НАН України 2016
Назва видання:Електротехніка і електромеханіка
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Онлайн доступ:http://dspace.nbuv.gov.ua/handle/123456789/147039
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Цитувати:Guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises / D.A. Gapon, Ya.S. Bederak // Електротехніка і електромеханіка. — 2016. — № 1. — С. 56-58. — Бібліогр.: 9 назв. — англ.

Репозиторії

Digital Library of Periodicals of National Academy of Sciences of Ukraine
id irk-123456789-147039
record_format dspace
spelling irk-123456789-1470392019-02-14T01:25:59Z Guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises Gapon, D.A. Bederak, Ya.S. Електричні станції, мережі і системи Purpose. The problem of resonance phenomena in power systems of industrial enterprises using capacitor banks for reactive power compensation was detected. Circuit of the capacitor banks tier to downshift main substation tires is present. But there is no common algorithm to calculate and avoid such trouble. The main goal of this article is to introduce some basics for power supply systems with possible resonant circuits engineering. Methodology. At the first step the data on the change of the current in the chemical company network when changing capacitor banks value are received. For these purposes the oscilloscope function of digital protection relay was used. Current data samples were analyzed by spectrum detection software. Most significant levels of the 3rd and 5th harmonics were achieved. Comparison of harmonic distortion levels with and without capacitor bank is given. Results. Achieved data allow making conclusion about overloading reasons of capacitor banks while higher harmonics currents presence. A voltage and current harmonious composition measuring in the absence of power quality analyzers using digital protection relay terminals or emergencies registers are proposed. The necessity of power quality monitoring near capacitor banks connections to avoid resonance phenomena (current and voltage resonance) in industrial power supply systems is proven. The control algorithm of capacitor banks to provide electromagnetic compatibility, while various modes of nonlinear load operation is given. Originality. Using of digital protection relay oscilloscoping for current resonant detection can allow to significally reduce time and cost of solution. Replacement parallel circuit comprising a branch and one active-inductive load to another branch network in the presence of higher harmonics source are proposed. Practical value. A sequence for measuring the levels of harmonic components at the connections of capacitor banks in the absence of specialized instruments is proposed. The algorithm to avoid possible resonance currents in the presence of condensing units is proposed. В статье рассматривается проблема резонансных явлений в системах электроснабжения промышленных предприятий, использующих конденсаторные установки для компенсации реактивной мощности. Приведены данные по изменению токов 3-й и 5-й гармонических составляющих в сети химического предприятия при изменении мощности присоединенных конденсаторных установок. Предложен способ измерения качества электроэнергии при отсутствии анализаторов. Разработан алгоритм обеспечения электромагнитной совместимости на присоединениях конденсаторных установок 2016 Article Guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises / D.A. Gapon, Ya.S. Bederak // Електротехніка і електромеханіка. — 2016. — № 1. — С. 56-58. — Бібліогр.: 9 назв. — англ. 2074-272X DOI: https://doi.org/10.20998/2074-272X.2016.1.10 http://dspace.nbuv.gov.ua/handle/123456789/147039 621.311 en Електротехніка і електромеханіка Інститут технічних проблем магнетизму НАН України
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
language English
topic Електричні станції, мережі і системи
Електричні станції, мережі і системи
spellingShingle Електричні станції, мережі і системи
Електричні станції, мережі і системи
Gapon, D.A.
Bederak, Ya.S.
Guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises
Електротехніка і електромеханіка
description Purpose. The problem of resonance phenomena in power systems of industrial enterprises using capacitor banks for reactive power compensation was detected. Circuit of the capacitor banks tier to downshift main substation tires is present. But there is no common algorithm to calculate and avoid such trouble. The main goal of this article is to introduce some basics for power supply systems with possible resonant circuits engineering. Methodology. At the first step the data on the change of the current in the chemical company network when changing capacitor banks value are received. For these purposes the oscilloscope function of digital protection relay was used. Current data samples were analyzed by spectrum detection software. Most significant levels of the 3rd and 5th harmonics were achieved. Comparison of harmonic distortion levels with and without capacitor bank is given. Results. Achieved data allow making conclusion about overloading reasons of capacitor banks while higher harmonics currents presence. A voltage and current harmonious composition measuring in the absence of power quality analyzers using digital protection relay terminals or emergencies registers are proposed. The necessity of power quality monitoring near capacitor banks connections to avoid resonance phenomena (current and voltage resonance) in industrial power supply systems is proven. The control algorithm of capacitor banks to provide electromagnetic compatibility, while various modes of nonlinear load operation is given. Originality. Using of digital protection relay oscilloscoping for current resonant detection can allow to significally reduce time and cost of solution. Replacement parallel circuit comprising a branch and one active-inductive load to another branch network in the presence of higher harmonics source are proposed. Practical value. A sequence for measuring the levels of harmonic components at the connections of capacitor banks in the absence of specialized instruments is proposed. The algorithm to avoid possible resonance currents in the presence of condensing units is proposed.
format Article
author Gapon, D.A.
Bederak, Ya.S.
author_facet Gapon, D.A.
Bederak, Ya.S.
author_sort Gapon, D.A.
title Guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises
title_short Guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises
title_full Guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises
title_fullStr Guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises
title_full_unstemmed Guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises
title_sort guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises
publisher Інститут технічних проблем магнетизму НАН України
publishDate 2016
topic_facet Електричні станції, мережі і системи
url http://dspace.nbuv.gov.ua/handle/123456789/147039
citation_txt Guaranteeing the trouble-free operation of capacitor banks in power-supply systems of industrial enterprises / D.A. Gapon, Ya.S. Bederak // Електротехніка і електромеханіка. — 2016. — № 1. — С. 56-58. — Бібліогр.: 9 назв. — англ.
series Електротехніка і електромеханіка
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