Power factor correction in power delivery systems with mutipulse nonlinear loads

THE PURPOSE. Мutipulse rectifiers are widely used as a nonlinear loads in industrial distribution systems. The advantage of mutipulse rectifiers is low harmonic emission and high power factor. However input currents of mutipulse rectifiers have a wide spectrum including characteristic and noncharact...

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Main Authors: D. E. Egorov, V. P. Dovgun, N. P. Boyarskaya, A. V. Jan, A. S. Slyusarev
Format: Article
Language:English
Published: Kazan State Power Engineering University 2021-03-01
Series:Известия высших учебных заведений: Проблемы энергетики
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Online Access:https://www.energyret.ru/jour/article/view/1606
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author D. E. Egorov
V. P. Dovgun
N. P. Boyarskaya
A. V. Jan
A. S. Slyusarev
author_facet D. E. Egorov
V. P. Dovgun
N. P. Boyarskaya
A. V. Jan
A. S. Slyusarev
author_sort D. E. Egorov
collection DOAJ
description THE PURPOSE. Мutipulse rectifiers are widely used as a nonlinear loads in industrial distribution systems. The advantage of mutipulse rectifiers is low harmonic emission and high power factor. However input currents of mutipulse rectifiers have a wide spectrum including characteristic and noncharacteristic harmonics. This has a negative impact on the power quality. Shunt capacitors are the simplest form of reactive power compensation in industrial power distribution systems. However power systems with nonlinear loads suffer from severe harmonic distortion due to the parallel resonance between capacitors and system inductance. Special compensating devices for reactive power compensation and correction of power system frequency response for resonances damping are necessary. METHODS. In this paper shunt compensating devices for power delivery systems with multipulse nonlinear loads are considered. Proposed devices are composed of 3-5 order parallel connected passive broadband filters. They provide power factor correction, voltage and current harmonics mitigation and resonance modes damping. A general broadband filter design procedure based on frequency and reactive power scaling of normalized filter parameters is developed. RESULTS. Characteristics of different compensating devices configurations using broadband passive filters are discussed. It is shown that broadband filtering devices enable compensation of fundamental frequency reactive power as well as mitigation of voltage harmonic level to values determined by Russian and international standards. Proposed devices have lower fundamental power losses in c omparing with known solutions. CONCLUSION. Proposed analytical design method is applicable to broadband filters of different orders.
format Article
id doaj-art-c0cfae1abb294792bff8ec68c8d85872
institution OA Journals
issn 1998-9903
language English
publishDate 2021-03-01
publisher Kazan State Power Engineering University
record_format Article
series Известия высших учебных заведений: Проблемы энергетики
spelling doaj-art-c0cfae1abb294792bff8ec68c8d858722025-08-20T02:27:27ZengKazan State Power Engineering UniversityИзвестия высших учебных заведений: Проблемы энергетики1998-99032021-03-0122631510.30724/1998-9903-2020-22-6-3-15704Power factor correction in power delivery systems with mutipulse nonlinear loadsD. E. Egorov0V. P. Dovgun1N. P. Boyarskaya2A. V. Jan3A. S. Slyusarev4Siberian Federal UniversitySiberian Federal UniversityКrasnoyarsk State Agricultural UniversitySiberian Federal UniversitySiberian Federal UniversityTHE PURPOSE. Мutipulse rectifiers are widely used as a nonlinear loads in industrial distribution systems. The advantage of mutipulse rectifiers is low harmonic emission and high power factor. However input currents of mutipulse rectifiers have a wide spectrum including characteristic and noncharacteristic harmonics. This has a negative impact on the power quality. Shunt capacitors are the simplest form of reactive power compensation in industrial power distribution systems. However power systems with nonlinear loads suffer from severe harmonic distortion due to the parallel resonance between capacitors and system inductance. Special compensating devices for reactive power compensation and correction of power system frequency response for resonances damping are necessary. METHODS. In this paper shunt compensating devices for power delivery systems with multipulse nonlinear loads are considered. Proposed devices are composed of 3-5 order parallel connected passive broadband filters. They provide power factor correction, voltage and current harmonics mitigation and resonance modes damping. A general broadband filter design procedure based on frequency and reactive power scaling of normalized filter parameters is developed. RESULTS. Characteristics of different compensating devices configurations using broadband passive filters are discussed. It is shown that broadband filtering devices enable compensation of fundamental frequency reactive power as well as mitigation of voltage harmonic level to values determined by Russian and international standards. Proposed devices have lower fundamental power losses in c omparing with known solutions. CONCLUSION. Proposed analytical design method is applicable to broadband filters of different orders.https://www.energyret.ru/jour/article/view/1606power factorharmonicsmultipulse nonlinear loadsbroadband passive filters
spellingShingle D. E. Egorov
V. P. Dovgun
N. P. Boyarskaya
A. V. Jan
A. S. Slyusarev
Power factor correction in power delivery systems with mutipulse nonlinear loads
Известия высших учебных заведений: Проблемы энергетики
power factor
harmonics
multipulse nonlinear loads
broadband passive filters
title Power factor correction in power delivery systems with mutipulse nonlinear loads
title_full Power factor correction in power delivery systems with mutipulse nonlinear loads
title_fullStr Power factor correction in power delivery systems with mutipulse nonlinear loads
title_full_unstemmed Power factor correction in power delivery systems with mutipulse nonlinear loads
title_short Power factor correction in power delivery systems with mutipulse nonlinear loads
title_sort power factor correction in power delivery systems with mutipulse nonlinear loads
topic power factor
harmonics
multipulse nonlinear loads
broadband passive filters
url https://www.energyret.ru/jour/article/view/1606
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AT npboyarskaya powerfactorcorrectioninpowerdeliverysystemswithmutipulsenonlinearloads
AT avjan powerfactorcorrectioninpowerdeliverysystemswithmutipulsenonlinearloads
AT asslyusarev powerfactorcorrectioninpowerdeliverysystemswithmutipulsenonlinearloads