Optimization of current total harmonic distortion on three-level transformerless photovoltaic inverter

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Main Authors: Ismail, Daut, Prof. Dr., Muhammad Irwanto, Mohd Irwan, Yusoff, Gomesh Nair, Shasidharan, Noor Syafawati, Ahmad
Other Authors: ismail.daut@unimap.edu.my
Format: Article
Language:English
Published: Elsevier Ltd. 2013
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Online Access:http://dspace.unimap.edu.my/xmlui/handle/123456789/26009
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spelling my.unimap-260092019-05-10T04:12:33Z Optimization of current total harmonic distortion on three-level transformerless photovoltaic inverter Ismail, Daut, Prof. Dr. Muhammad Irwanto Mohd Irwan, Yusoff Gomesh Nair, Shasidharan Noor Syafawati, Ahmad ismail.daut@unimap.edu.my AC waveform Photovoltaic inverter Solar irradiance Temperature Transformerless Link to publisher's homepage at http://www.elsevier.com/ This paper presents a new topology of three-level transformerless photovoltaic (PV) inverter. It consists of three main circuits; they are a pulse driver circuit, a full bridge inverter circuit and a power factor correction circuit that have functions as production of pulse waves, to develop alternating current (AC) waveform and to stable voltage of PV array. The transformerless inverter is installed in front of Electrical Energy and Industrial Electronic Systems (EEIES) Cluster, Universiti Malaysia Perlis, Northern Malaysia. Its main energy source is a PV array that consists of three unit PV modules, each unit has 81 V, 60 W. In this research, optimization of current total harmonic distortion (CTHD) on AC three-level waveform transformerless PV inverter is developed and created by a microcontroller PIC16F627A-I/P with change maximum voltage angle of the AC three-level waveform from 20 0 to 180 0. Resistive load of 30 W lamp and inductive load of 20 W water pump are applied to the transformerless PV inverter. The result shows that the less CTHD of 15.448% is obtained when the maximum voltage angle is 134 0. 2013-06-24T08:21:30Z 2013-06-24T08:21:30Z 2012 Article Energy Procedia, vol. 14, 2012, pages 1560-1565 1876-6102 http://www.sciencedirect.com/science/article/pii/S187661021104553X# http://hdl.handle.net/123456789/26009 en Elsevier Ltd.
institution Universiti Malaysia Perlis
building UniMAP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Perlis
content_source UniMAP Library Digital Repository
url_provider http://dspace.unimap.edu.my/
language English
topic AC waveform
Photovoltaic inverter
Solar irradiance
Temperature
Transformerless
spellingShingle AC waveform
Photovoltaic inverter
Solar irradiance
Temperature
Transformerless
Ismail, Daut, Prof. Dr.
Muhammad Irwanto
Mohd Irwan, Yusoff
Gomesh Nair, Shasidharan
Noor Syafawati, Ahmad
Optimization of current total harmonic distortion on three-level transformerless photovoltaic inverter
description Link to publisher's homepage at http://www.elsevier.com/
author2 ismail.daut@unimap.edu.my
author_facet ismail.daut@unimap.edu.my
Ismail, Daut, Prof. Dr.
Muhammad Irwanto
Mohd Irwan, Yusoff
Gomesh Nair, Shasidharan
Noor Syafawati, Ahmad
format Article
author Ismail, Daut, Prof. Dr.
Muhammad Irwanto
Mohd Irwan, Yusoff
Gomesh Nair, Shasidharan
Noor Syafawati, Ahmad
author_sort Ismail, Daut, Prof. Dr.
title Optimization of current total harmonic distortion on three-level transformerless photovoltaic inverter
title_short Optimization of current total harmonic distortion on three-level transformerless photovoltaic inverter
title_full Optimization of current total harmonic distortion on three-level transformerless photovoltaic inverter
title_fullStr Optimization of current total harmonic distortion on three-level transformerless photovoltaic inverter
title_full_unstemmed Optimization of current total harmonic distortion on three-level transformerless photovoltaic inverter
title_sort optimization of current total harmonic distortion on three-level transformerless photovoltaic inverter
publisher Elsevier Ltd.
publishDate 2013
url http://dspace.unimap.edu.my/xmlui/handle/123456789/26009
_version_ 1643806165230944256
score 13.222552