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DOI: https://doi.org/10.15407/techned2018.04.106

THE MODELING OF THE OPERATING MODES OF HYBRID FILTER COMPENSATING CONVERTERS TO ENSURE ELECTROMAGNETIC COMPATIBILITY IN THREE-PHASE SYSTEMS

Journal Tekhnichna elektrodynamika
Publisher Institute of Electrodynamics National Academy of Science of Ukraine
ISSN 1607-7970 (print), 2218-1903 (online)
Issue No 4, 2018 (July/August)
Pages 106 – 109

 

Authors
A.F. Zharkin*, V.O. Novskyi**, D.O. Malakhatka
Institute of Electrodynamics National Academy of Sciences of Ukraine,
pr. Peremohy, 56, Kyiv, 03057, Ukraine,
e-mail: Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript
* ORCID ID : http://orcid.org/0000-0001-5996-0901
** ORCID ID : http://orcid.org/0000-0003-3857-7027

 

Abstract

In the article are considered the main aspects of the use of the developed hybrid filter compensating converters(GFCC), which are based on a regulated filtering device and a "distributive" static synchronous reactive power compensator for complex improvement of the electric power quality and provision of electromagnetic compatibility in local power supply systems. GFCC are designed to compensate the load currents in the neutral conductor of a three-phase low-voltage network, symmetrical regulation (stabilization) voltage of the load and filtering the currents of higher harmonics at the terminals of responsible consumer in the local network. References 3, figures 3, table 1.

 

Key words: electromagnetic compatibility, local power supply system, voltage quality, hybrid filter compensating converter, responsible electric consumer.

 

Received:    02.03.2018
Accepted:   19.03.2018
Published:

 

References

1. Zharkin A.F., Novskyi V.O., Malakhatka D.O. Complex improvement of power quality and ensure electrical safety in local power suooly systems when using hybrid filter compensating converters. Tekhnichna Elektrodynamika. 2018. No 1. Pp. 69–77. DOI: https://doi.org/10.15407/techned2018.01.06 (Ukr)
2. Kyryk V.V., Khalikov V.A. Computer technologies of modeling and research of electrotechnical systems. Kyiv: IED NAN Ukrainy, 2009. 213 p. (Ukr)
3. Chetoshnykova L.M., Smolentsev N.Y., Chetoshnykov S.A., Dehtiarev D.V. Energy management system in local low voltage electrical network. Polzunovskii vestnik: FGBOU Altaiskii gosudarstvennyi tekhnicheskii universitet im. I.I. Polzunova. 2015. No 1. Pp. 103-107. (Rus)