Asymmetric Fuzzy Logic Controlled DC-DC Converter for Solar Energy system

<p><strong>In this paper, a controlled voltage system for a solar energy source is presented, by a new command called fuzzy logic controller (FLC), via a DC-DC converter .The fuzzy logic control is selected due its performance and efficiency even for nonlinear systems such as the DC-DC c...

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Main Authors: Mohamed Boutouba, Abdelghani El Ougli, Sabah Miqoi, Belkassem Tidhaf
Format: Article
Language:English
Published: Academy Publishing Center 2016-06-01
Series:Renewable Energy and Sustainable Development
Subjects:
Online Access:http://apc.aast.edu/ojs/index.php/RESD/article/view/125
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author Mohamed Boutouba
Abdelghani El Ougli
Sabah Miqoi
Belkassem Tidhaf
author_facet Mohamed Boutouba
Abdelghani El Ougli
Sabah Miqoi
Belkassem Tidhaf
author_sort Mohamed Boutouba
collection DOAJ
description <p><strong>In this paper, a controlled voltage system for a solar energy source is presented, by a new command called fuzzy logic controller (FLC), via a DC-DC converter .The fuzzy logic control is selected due its performance and efficiency even for nonlinear systems such as the DC-DC converters.  </strong></p><p><strong>A simulation with MATLAB SIMULINK environment of the FL control system, compared with a classical PI controller, is presented at the end of the paper to illustrate the good behavior of the control.</strong></p>
format Article
id doaj-art-b058a41cfbca45d4a6552dd00f31c97c
institution Matheson Library
issn 2356-8518
2356-8569
language English
publishDate 2016-06-01
publisher Academy Publishing Center
record_format Article
series Renewable Energy and Sustainable Development
spelling doaj-art-b058a41cfbca45d4a6552dd00f31c97c2025-07-09T10:32:33ZengAcademy Publishing CenterRenewable Energy and Sustainable Development2356-85182356-85692016-06-0121525910.21622/resd.2016.02.1.05266Asymmetric Fuzzy Logic Controlled DC-DC Converter for Solar Energy systemMohamed Boutouba0Abdelghani El Ougli1Sabah Miqoi2Belkassem Tidhaf3National School of Applied Sciences of Oujda, Mohammed I University.Abdelghani El Ougli ENSA Oujda UMP Oujda MoroccoSabah MIQOI ENSA Oujda UMP Oujda MoroccoBelkassem TIDHAF ENSA Oujda UMP Oujda Morocco<p><strong>In this paper, a controlled voltage system for a solar energy source is presented, by a new command called fuzzy logic controller (FLC), via a DC-DC converter .The fuzzy logic control is selected due its performance and efficiency even for nonlinear systems such as the DC-DC converters.  </strong></p><p><strong>A simulation with MATLAB SIMULINK environment of the FL control system, compared with a classical PI controller, is presented at the end of the paper to illustrate the good behavior of the control.</strong></p>http://apc.aast.edu/ojs/index.php/RESD/article/view/125buck and boost converterpi fuzzy logic controller (flc)photovoltaic (pv)voltage regulation.
spellingShingle Mohamed Boutouba
Abdelghani El Ougli
Sabah Miqoi
Belkassem Tidhaf
Asymmetric Fuzzy Logic Controlled DC-DC Converter for Solar Energy system
Renewable Energy and Sustainable Development
buck and boost converter
pi fuzzy logic controller (flc)
photovoltaic (pv)
voltage regulation.
title Asymmetric Fuzzy Logic Controlled DC-DC Converter for Solar Energy system
title_full Asymmetric Fuzzy Logic Controlled DC-DC Converter for Solar Energy system
title_fullStr Asymmetric Fuzzy Logic Controlled DC-DC Converter for Solar Energy system
title_full_unstemmed Asymmetric Fuzzy Logic Controlled DC-DC Converter for Solar Energy system
title_short Asymmetric Fuzzy Logic Controlled DC-DC Converter for Solar Energy system
title_sort asymmetric fuzzy logic controlled dc dc converter for solar energy system
topic buck and boost converter
pi fuzzy logic controller (flc)
photovoltaic (pv)
voltage regulation.
url http://apc.aast.edu/ojs/index.php/RESD/article/view/125
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AT abdelghanielougli asymmetricfuzzylogiccontrolleddcdcconverterforsolarenergysystem
AT sabahmiqoi asymmetricfuzzylogiccontrolleddcdcconverterforsolarenergysystem
AT belkassemtidhaf asymmetricfuzzylogiccontrolleddcdcconverterforsolarenergysystem