A Modified Perturb-and-Observe Control for Improved Maximum Power Point Tracking Performance on Grid-Connected Photovoltaic System

This paper deals with the control of maximum power production in a grid-connected photovoltaic system. The on-grid system ensures the continuity of electricity supply to consumers. It also offers less investment and operation cost due to the removal of battery requirements normally indispensable...

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Principais autores: Rini Nur Hasanah, Frediawan Yuniar, Onny Setyawati, Hadi Suyono, Dian Retno Sawitri, Taufik Taufik
Formato: Artigo
Idioma:English
Publicado em: Universitas Indonesia 2024-01-01
coleção:International Journal of Technology
Assuntos:
Acesso em linha:https://ijtech.eng.ui.ac.id/article/view/5316
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author Rini Nur Hasanah
Frediawan Yuniar
Onny Setyawati
Hadi Suyono
Dian Retno Sawitri
Taufik Taufik
author_facet Rini Nur Hasanah
Frediawan Yuniar
Onny Setyawati
Hadi Suyono
Dian Retno Sawitri
Taufik Taufik
author_sort Rini Nur Hasanah
collection DOAJ
description This paper deals with the control of maximum power production in a grid-connected photovoltaic system. The on-grid system ensures the continuity of electricity supply to consumers. It also offers less investment and operation cost due to the removal of battery requirements normally indispensable to guarantee supply continuity. To maintain the maximum output power production of photovoltaic panels regardless of changes in irradiation, proper control of the boost converter is necessary. The known perturb-and-observe method is explored and modified to improve performance. The modification is proposed by adding the measurement of the current variable to reduce the oscillation around the maximum power point once it is achieved. The connection to an existing single-phase alternating-current power grid is accomplished by implementing sinusoidal pulse-width modulation on the inverter. Phase-angle synchronization between the inverter output and the existing power grid is accomplished by using the phase-lock loop technique. Simulation of the proposed method showed that an improvement of the photovoltaic function up to 98% has been achieved.
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spelling doaj.art-9525eb61cd374a0aaf32eb4aa139fa3b2024-01-25T01:56:09ZengUniversitas IndonesiaInternational Journal of Technology2086-96142087-21002024-01-011519910910.14716/ijtech.v15i1.53165316A Modified Perturb-and-Observe Control for Improved Maximum Power Point Tracking Performance on Grid-Connected Photovoltaic SystemRini Nur Hasanah0Frediawan Yuniar1Onny Setyawati2Hadi Suyono3Dian Retno Sawitri4Taufik Taufik5Department of Electrical Engineering, Universitas Brawijaya, Jalan Veteran, Malang 65145 IndonesiaDepartment of Electrical Engineering, Universitas Brawijaya, Jalan Veteran, Malang 65145 IndonesiaDepartment of Electrical Engineering, Universitas Brawijaya, Jalan Veteran, Malang 65145 IndonesiaDepartment of Electrical Engineering, Universitas Brawijaya, Jalan Veteran, Malang 65145 IndonesiaDepartment of Electrical Engineering, Universitas Dian Nuswantoro, Semarang 50131 IndonesiaDepartment of Electrical Engineering, Cal Poly State University, 1 Grand Avenue, San Luis Obispo, CA 93407 United States of AmericaThis paper deals with the control of maximum power production in a grid-connected photovoltaic system. The on-grid system ensures the continuity of electricity supply to consumers. It also offers less investment and operation cost due to the removal of battery requirements normally indispensable to guarantee supply continuity. To maintain the maximum output power production of photovoltaic panels regardless of changes in irradiation, proper control of the boost converter is necessary. The known perturb-and-observe method is explored and modified to improve performance. The modification is proposed by adding the measurement of the current variable to reduce the oscillation around the maximum power point once it is achieved. The connection to an existing single-phase alternating-current power grid is accomplished by implementing sinusoidal pulse-width modulation on the inverter. Phase-angle synchronization between the inverter output and the existing power grid is accomplished by using the phase-lock loop technique. Simulation of the proposed method showed that an improvement of the photovoltaic function up to 98% has been achieved.https://ijtech.eng.ui.ac.id/article/view/5316boost convertergrid-tieinvertermaximum power point tracking (mppt)photovoltaic
spellingShingle Rini Nur Hasanah
Frediawan Yuniar
Onny Setyawati
Hadi Suyono
Dian Retno Sawitri
Taufik Taufik
A Modified Perturb-and-Observe Control for Improved Maximum Power Point Tracking Performance on Grid-Connected Photovoltaic System
International Journal of Technology
boost converter
grid-tie
inverter
maximum power point tracking (mppt)
photovoltaic
title A Modified Perturb-and-Observe Control for Improved Maximum Power Point Tracking Performance on Grid-Connected Photovoltaic System
title_full A Modified Perturb-and-Observe Control for Improved Maximum Power Point Tracking Performance on Grid-Connected Photovoltaic System
title_fullStr A Modified Perturb-and-Observe Control for Improved Maximum Power Point Tracking Performance on Grid-Connected Photovoltaic System
title_full_unstemmed A Modified Perturb-and-Observe Control for Improved Maximum Power Point Tracking Performance on Grid-Connected Photovoltaic System
title_short A Modified Perturb-and-Observe Control for Improved Maximum Power Point Tracking Performance on Grid-Connected Photovoltaic System
title_sort modified perturb and observe control for improved maximum power point tracking performance on grid connected photovoltaic system
topic boost converter
grid-tie
inverter
maximum power point tracking (mppt)
photovoltaic
url https://ijtech.eng.ui.ac.id/article/view/5316
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