PERFORMANCE ANALYSIS OF SIX-PHASE INDUCTION MACHINE-MULTILEVEL INVERTER WITH ARBITRARY DISPLACEMENT
Purpose. This paper presents a d-q model of six-phase induction machine supplied by a two identical voltage source inverters suitable for analysis the dynamic steady under balanced operating condition. In the analytical model, the effects of common mutual leakage inductance between the dual stator h...
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Дата: | 2020 |
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Формат: | Стаття |
Мова: | English |
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National Technical University "Kharkiv Polytechnic Institute" and State Institution “Institute of Technical Problems of Magnetism of the National Academy of Sciences of Ukraine”
2020
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Онлайн доступ: | http://eie.khpi.edu.ua/article/view/2074-272X.2020.4.02 |
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Назва журналу: | Electrical Engineering & Electromechanics |
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eiekhpieduua-article-2074252020-08-25T11:26:25Z PERFORMANCE ANALYSIS OF SIX-PHASE INDUCTION MACHINE-MULTILEVEL INVERTER WITH ARBITRARY DISPLACEMENT PERFORMANCE ANALYSIS OF SIX-PHASE INDUCTION MACHINE-MULTILEVEL INVERTER WITH ARBITRARY DISPLACEMENT Ben Slimene, Marwa six phase induction machine multiphase electric drives multiphase machines performance displacements multi-level inverter 621.313 шестифазная асинхронная машина многофазные электроприводы производительность многофазных машин смещения многоуровневый инвертор 621.313 Purpose. This paper presents a d-q model of six-phase induction machine supplied by a two identical voltage source inverters suitable for analysis the dynamic steady under balanced operating condition. In the analytical model, the effects of common mutual leakage inductance between the dual stator have been included. The model has been developed in general reference frame taking into account of 0°, 30° and 60° displacements between two stator winding sets. The main purpose of this work is to conduct a quantitative study to show the advantage of supplying the six-phase induction machine by a multilevel inverter. The voltage and current total harmonic distortion and the torque ripple rate are the main targets. This paper is organized into four sections. After the introduction, the second section includes development of mathematical models concerning the six-phase induction machine. The third presents the effect of displacements of 0°, 30 ° and 60 ° between two stator-winding sets, and a comparison of three cases. After that, we present a comparative study between two, three, five and seven inverter levels when feeding the six-phase induction machine. For this purpose, simulations were carried out to obtain phase currents and torque ripple rates in steady state. Цель. В статье представлена d-q модель шестифазной асинхронной машины, снабженной двумя идентичными инверторами источника напряжения, пригодными для анализа динамической устойчивости при сбалансированных условиях работы. В аналитическую модель включено влияние общей взаимной индуктивности рассеяния между двойным статором. Модель разработана в общей системе отсчета с учетом смещений на 0°, 30° и 60° между двумя наборами обмоток статора. Основная цель данной работы – провести количественное исследование, чтобы показать преимущество питания шестифазной асинхронной машины многоуровневым инвертором. Общее гармоническое искажение напряжения, тока и пульсация крутящего момента являются основными целями исследования. Статья состоит из четырех разделов. После введения, второй раздел содержит разработку математических моделей применительно к шестифазной асинхронной машине. В третьем разделе представлено влияние смещения на 0°, 30° и 60° между двумя наборами обмоток статора, а также сравнение трех указанных случаев. После этого представлено сравнительное исследование двух, трех, пяти и семи уровней инвертора при питании шестифазной асинхронной машины. Для этой цели проведено моделирование с целью получения фазных токов и пульсаций крутящего момента в стационарном состоянии. National Technical University "Kharkiv Polytechnic Institute" and State Institution “Institute of Technical Problems of Magnetism of the National Academy of Sciences of Ukraine” 2020-08-12 Article Article application/pdf http://eie.khpi.edu.ua/article/view/2074-272X.2020.4.02 10.20998/2074-272X.2020.4.02 Electrical Engineering & Electromechanics; No. 4 (2020); 12-16 Электротехника и Электромеханика; № 4 (2020); 12-16 Електротехніка і Електромеханіка; № 4 (2020); 12-16 2309-3404 2074-272X en http://eie.khpi.edu.ua/article/view/2074-272X.2020.4.02/209859 Copyright (c) 2020 Marwa Ben Slimene https://creativecommons.org/licenses/by-nc/4.0 |
institution |
Electrical Engineering & Electromechanics |
collection |
OJS |
language |
English |
topic |
six phase induction machine multiphase electric drives multiphase machines performance displacements multi-level inverter 621.313 шестифазная асинхронная машина многофазные электроприводы производительность многофазных машин смещения многоуровневый инвертор 621.313 |
spellingShingle |
six phase induction machine multiphase electric drives multiphase machines performance displacements multi-level inverter 621.313 шестифазная асинхронная машина многофазные электроприводы производительность многофазных машин смещения многоуровневый инвертор 621.313 Ben Slimene, Marwa PERFORMANCE ANALYSIS OF SIX-PHASE INDUCTION MACHINE-MULTILEVEL INVERTER WITH ARBITRARY DISPLACEMENT |
topic_facet |
six phase induction machine multiphase electric drives multiphase machines performance displacements multi-level inverter 621.313 шестифазная асинхронная машина многофазные электроприводы производительность многофазных машин смещения многоуровневый инвертор 621.313 |
format |
Article |
author |
Ben Slimene, Marwa |
author_facet |
Ben Slimene, Marwa |
author_sort |
Ben Slimene, Marwa |
title |
PERFORMANCE ANALYSIS OF SIX-PHASE INDUCTION MACHINE-MULTILEVEL INVERTER WITH ARBITRARY DISPLACEMENT |
title_short |
PERFORMANCE ANALYSIS OF SIX-PHASE INDUCTION MACHINE-MULTILEVEL INVERTER WITH ARBITRARY DISPLACEMENT |
title_full |
PERFORMANCE ANALYSIS OF SIX-PHASE INDUCTION MACHINE-MULTILEVEL INVERTER WITH ARBITRARY DISPLACEMENT |
title_fullStr |
PERFORMANCE ANALYSIS OF SIX-PHASE INDUCTION MACHINE-MULTILEVEL INVERTER WITH ARBITRARY DISPLACEMENT |
title_full_unstemmed |
PERFORMANCE ANALYSIS OF SIX-PHASE INDUCTION MACHINE-MULTILEVEL INVERTER WITH ARBITRARY DISPLACEMENT |
title_sort |
performance analysis of six-phase induction machine-multilevel inverter with arbitrary displacement |
title_alt |
PERFORMANCE ANALYSIS OF SIX-PHASE INDUCTION MACHINE-MULTILEVEL INVERTER WITH ARBITRARY DISPLACEMENT |
description |
Purpose. This paper presents a d-q model of six-phase induction machine supplied by a two identical voltage source inverters suitable for analysis the dynamic steady under balanced operating condition. In the analytical model, the effects of common mutual leakage inductance between the dual stator have been included. The model has been developed in general reference frame taking into account of 0°, 30° and 60° displacements between two stator winding sets. The main purpose of this work is to conduct a quantitative study to show the advantage of supplying the six-phase induction machine by a multilevel inverter. The voltage and current total harmonic distortion and the torque ripple rate are the main targets. This paper is organized into four sections. After the introduction, the second section includes development of mathematical models concerning the six-phase induction machine. The third presents the effect of displacements of 0°, 30 ° and 60 ° between two stator-winding sets, and a comparison of three cases. After that, we present a comparative study between two, three, five and seven inverter levels when feeding the six-phase induction machine. For this purpose, simulations were carried out to obtain phase currents and torque ripple rates in steady state. |
publisher |
National Technical University "Kharkiv Polytechnic Institute" and State Institution “Institute of Technical Problems of Magnetism of the National Academy of Sciences of Ukraine” |
publishDate |
2020 |
url |
http://eie.khpi.edu.ua/article/view/2074-272X.2020.4.02 |
work_keys_str_mv |
AT benslimenemarwa performanceanalysisofsixphaseinductionmachinemultilevelinverterwitharbitrarydisplacement |
first_indexed |
2024-06-01T14:39:36Z |
last_indexed |
2024-06-01T14:39:36Z |
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1800670047996215296 |