Development of Photovoltaic Inverter for AC Load

This project presents the development of Photovoltaic (PV) push-pull inverter for alternating current (AC) application. There are two main systems in this project which is the PV system and the inverter system. The photovoltaic system consists of the PV panel which is used to seep sunshine to rechar...

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Main Authors: Nur Fairuz Mohamed Yusof, Mazwin Mazlan
Format: Article
Language:English
Published: Research Plus Journals 2017-12-01
Series:International Journal of Advanced Research in Engineering
Online Access:http://researchplusjournals.com/index.php/IJARE/article/view/369
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spelling doaj-7cf6445b10cb4a41bfbdbda5d60288d12020-11-24T23:58:47ZengResearch Plus JournalsInternational Journal of Advanced Research in Engineering2412-43622017-12-0134283110.24178/ijare.2017.3.4.28369Development of Photovoltaic Inverter for AC LoadNur Fairuz Mohamed Yusof0Mazwin Mazlan1School of Electrical System Engineering, Universiti Malaysia Perlis, MalaysiaSchool of Electrical System Engineering, Universiti Malaysia Perlis, MalaysiaThis project presents the development of Photovoltaic (PV) push-pull inverter for alternating current (AC) application. There are two main systems in this project which is the PV system and the inverter system. The photovoltaic system consists of the PV panel which is used to seep sunshine to recharge the battery and the solar charger controller circuit that prevent battery from surpluses voltage is connected between solar PV and battery. While the push-pull inverter play a pivotal role in switching from direct current (DC) voltage to AC voltage for the inverter system. Then the AC voltage rose to 230 V by using transformer. The push-pull inverter switching is controlled by a multi-vibrator driver circuit. This project used two light emitting diode (LED) light bulb as an AC load and Metal Oxide Semiconductor Field Effect Transistor (MOSFETs) as the power switches. This project had been analysed through software and hardware prototype for comparison purposed. The efficiency of ideal system that obtains from software simulation is 94.9% while for the hardware prototype is nearly to 95%. While the total harmonic distortion (THD) for both voltage and current is 48.32% from software simulation and 47.9% from hardware prototype analysis. The results have been found in good agreement with the analysis presented in this paper.http://researchplusjournals.com/index.php/IJARE/article/view/369
collection DOAJ
language English
format Article
sources DOAJ
author Nur Fairuz Mohamed Yusof
Mazwin Mazlan
spellingShingle Nur Fairuz Mohamed Yusof
Mazwin Mazlan
Development of Photovoltaic Inverter for AC Load
International Journal of Advanced Research in Engineering
author_facet Nur Fairuz Mohamed Yusof
Mazwin Mazlan
author_sort Nur Fairuz Mohamed Yusof
title Development of Photovoltaic Inverter for AC Load
title_short Development of Photovoltaic Inverter for AC Load
title_full Development of Photovoltaic Inverter for AC Load
title_fullStr Development of Photovoltaic Inverter for AC Load
title_full_unstemmed Development of Photovoltaic Inverter for AC Load
title_sort development of photovoltaic inverter for ac load
publisher Research Plus Journals
series International Journal of Advanced Research in Engineering
issn 2412-4362
publishDate 2017-12-01
description This project presents the development of Photovoltaic (PV) push-pull inverter for alternating current (AC) application. There are two main systems in this project which is the PV system and the inverter system. The photovoltaic system consists of the PV panel which is used to seep sunshine to recharge the battery and the solar charger controller circuit that prevent battery from surpluses voltage is connected between solar PV and battery. While the push-pull inverter play a pivotal role in switching from direct current (DC) voltage to AC voltage for the inverter system. Then the AC voltage rose to 230 V by using transformer. The push-pull inverter switching is controlled by a multi-vibrator driver circuit. This project used two light emitting diode (LED) light bulb as an AC load and Metal Oxide Semiconductor Field Effect Transistor (MOSFETs) as the power switches. This project had been analysed through software and hardware prototype for comparison purposed. The efficiency of ideal system that obtains from software simulation is 94.9% while for the hardware prototype is nearly to 95%. While the total harmonic distortion (THD) for both voltage and current is 48.32% from software simulation and 47.9% from hardware prototype analysis. The results have been found in good agreement with the analysis presented in this paper.
url http://researchplusjournals.com/index.php/IJARE/article/view/369
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AT mazwinmazlan developmentofphotovoltaicinverterforacload
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