A method for calculating the parameters of the sine filter of the frequency converter, taking into account the criterion of starting current limitation and pulse-width modulation frequency

An analysis of the method for ensuring the sinusoidality of the output voltage in power generation systems with self-commutated voltage inverters under the requirements of the international standard IEEE-519 is presented. In a number of programs, especially low-power generation systems, a low-cost...

Full description

Bibliographic Details
Main Authors: Volodymyr Nerubatskyi, Oleksandr Plakhtii, Denys Hordiienko, Serhii Mykhalkiv, Vasyl Ravluyk
Format: Article
Language:English
Published: PC Technology Center 2021-02-01
Series:Eastern-European Journal of Enterprise Technologies
Subjects:
Online Access:http://journals.uran.ua/eejet/article/view/225327
id doaj-f7e91b999fcd42e08e4abc40d83a6a4f
record_format Article
spelling doaj-f7e91b999fcd42e08e4abc40d83a6a4f2021-03-11T14:47:30ZengPC Technology CenterEastern-European Journal of Enterprise Technologies1729-37741729-40612021-02-0118 (109)61610.15587/1729-4061.2021.225327262801A method for calculating the parameters of the sine filter of the frequency converter, taking into account the criterion of starting current limitation and pulse-width modulation frequencyVolodymyr Nerubatskyi0https://orcid.org/0000-0002-4309-601XOleksandr Plakhtii1https://orcid.org/0000-0002-1535-8991Denys Hordiienko2https://orcid.org/0000-0002-0347-5656Serhii Mykhalkiv3https://orcid.org/0000-0002-0425-6295Vasyl Ravluyk4https://orcid.org/0000-0003-4818-9482Ukrainian State University of Railway TransportLimited Liability Company «VО ОVЕN»Ukrainian State University of Railway TransportUkrainian State University of Railway TransportUkrainian State University of Railway TransportAn analysis of the method for ensuring the sinusoidality of the output voltage in power generation systems with self-commutated voltage inverters under the requirements of the international standard IEEE-519 is presented. In a number of programs, especially low-power generation systems, a low-cost solution is needed to provide the sinusoidal waveform of the output voltage with the total harmonic distortion of 5 %. This solution is to use two-level voltage inverters with an output sine LC filter. However, the feature of the sine filter with the frequency converter is that the PWM frequency affects the spectrum of higher harmonics of the output voltage. In addition, there is the starting current of the filter capacitor, which can disable the power switches of the voltage inverter. The developed method for calculating the values of the LC filter with the two-level voltage inverter in the PWM mode is presented meeting the requirements of the international standard IEEE-519, taking into account the modulation frequency and limitation of the starting current of the filter capacitor. To confirm the required quality of the output voltage of the two-level voltage inverter with the sine filter, an appropriate simulation model was created in the Matlab/Simulink computer simulation environment. The oscillograms and harmonic analysis of the input and output voltages of the sine filter, which showed the total harmonic distortion of 1.88 %, are presented. A physical prototype of the investigated system was created on the basis of a 5.5 kW OVEN PChV203-5K5-V frequency converter (Ukraine). Using the SIGLENT SDS1104X-E oscilloscope (China), the real waveform and the results of the harmonic analysis of the sine filter output voltage, confirming the implementation of the necessary sinusoidality criteria, were obtainedhttp://journals.uran.ua/eejet/article/view/225327self-commutated voltage inverterpower qualitytotal harmonic distortionsine filterpower sources
collection DOAJ
language English
format Article
sources DOAJ
author Volodymyr Nerubatskyi
Oleksandr Plakhtii
Denys Hordiienko
Serhii Mykhalkiv
Vasyl Ravluyk
spellingShingle Volodymyr Nerubatskyi
Oleksandr Plakhtii
Denys Hordiienko
Serhii Mykhalkiv
Vasyl Ravluyk
A method for calculating the parameters of the sine filter of the frequency converter, taking into account the criterion of starting current limitation and pulse-width modulation frequency
Eastern-European Journal of Enterprise Technologies
self-commutated voltage inverter
power quality
total harmonic distortion
sine filter
power sources
author_facet Volodymyr Nerubatskyi
Oleksandr Plakhtii
Denys Hordiienko
Serhii Mykhalkiv
Vasyl Ravluyk
author_sort Volodymyr Nerubatskyi
title A method for calculating the parameters of the sine filter of the frequency converter, taking into account the criterion of starting current limitation and pulse-width modulation frequency
title_short A method for calculating the parameters of the sine filter of the frequency converter, taking into account the criterion of starting current limitation and pulse-width modulation frequency
title_full A method for calculating the parameters of the sine filter of the frequency converter, taking into account the criterion of starting current limitation and pulse-width modulation frequency
title_fullStr A method for calculating the parameters of the sine filter of the frequency converter, taking into account the criterion of starting current limitation and pulse-width modulation frequency
title_full_unstemmed A method for calculating the parameters of the sine filter of the frequency converter, taking into account the criterion of starting current limitation and pulse-width modulation frequency
title_sort method for calculating the parameters of the sine filter of the frequency converter, taking into account the criterion of starting current limitation and pulse-width modulation frequency
publisher PC Technology Center
series Eastern-European Journal of Enterprise Technologies
issn 1729-3774
1729-4061
publishDate 2021-02-01
description An analysis of the method for ensuring the sinusoidality of the output voltage in power generation systems with self-commutated voltage inverters under the requirements of the international standard IEEE-519 is presented. In a number of programs, especially low-power generation systems, a low-cost solution is needed to provide the sinusoidal waveform of the output voltage with the total harmonic distortion of 5 %. This solution is to use two-level voltage inverters with an output sine LC filter. However, the feature of the sine filter with the frequency converter is that the PWM frequency affects the spectrum of higher harmonics of the output voltage. In addition, there is the starting current of the filter capacitor, which can disable the power switches of the voltage inverter. The developed method for calculating the values of the LC filter with the two-level voltage inverter in the PWM mode is presented meeting the requirements of the international standard IEEE-519, taking into account the modulation frequency and limitation of the starting current of the filter capacitor. To confirm the required quality of the output voltage of the two-level voltage inverter with the sine filter, an appropriate simulation model was created in the Matlab/Simulink computer simulation environment. The oscillograms and harmonic analysis of the input and output voltages of the sine filter, which showed the total harmonic distortion of 1.88 %, are presented. A physical prototype of the investigated system was created on the basis of a 5.5 kW OVEN PChV203-5K5-V frequency converter (Ukraine). Using the SIGLENT SDS1104X-E oscilloscope (China), the real waveform and the results of the harmonic analysis of the sine filter output voltage, confirming the implementation of the necessary sinusoidality criteria, were obtained
topic self-commutated voltage inverter
power quality
total harmonic distortion
sine filter
power sources
url http://journals.uran.ua/eejet/article/view/225327
work_keys_str_mv AT volodymyrnerubatskyi amethodforcalculatingtheparametersofthesinefilterofthefrequencyconvertertakingintoaccountthecriterionofstartingcurrentlimitationandpulsewidthmodulationfrequency
AT oleksandrplakhtii amethodforcalculatingtheparametersofthesinefilterofthefrequencyconvertertakingintoaccountthecriterionofstartingcurrentlimitationandpulsewidthmodulationfrequency
AT denyshordiienko amethodforcalculatingtheparametersofthesinefilterofthefrequencyconvertertakingintoaccountthecriterionofstartingcurrentlimitationandpulsewidthmodulationfrequency
AT serhiimykhalkiv amethodforcalculatingtheparametersofthesinefilterofthefrequencyconvertertakingintoaccountthecriterionofstartingcurrentlimitationandpulsewidthmodulationfrequency
AT vasylravluyk amethodforcalculatingtheparametersofthesinefilterofthefrequencyconvertertakingintoaccountthecriterionofstartingcurrentlimitationandpulsewidthmodulationfrequency
AT volodymyrnerubatskyi methodforcalculatingtheparametersofthesinefilterofthefrequencyconvertertakingintoaccountthecriterionofstartingcurrentlimitationandpulsewidthmodulationfrequency
AT oleksandrplakhtii methodforcalculatingtheparametersofthesinefilterofthefrequencyconvertertakingintoaccountthecriterionofstartingcurrentlimitationandpulsewidthmodulationfrequency
AT denyshordiienko methodforcalculatingtheparametersofthesinefilterofthefrequencyconvertertakingintoaccountthecriterionofstartingcurrentlimitationandpulsewidthmodulationfrequency
AT serhiimykhalkiv methodforcalculatingtheparametersofthesinefilterofthefrequencyconvertertakingintoaccountthecriterionofstartingcurrentlimitationandpulsewidthmodulationfrequency
AT vasylravluyk methodforcalculatingtheparametersofthesinefilterofthefrequencyconvertertakingintoaccountthecriterionofstartingcurrentlimitationandpulsewidthmodulationfrequency
_version_ 1724223774189944832