Battery integrated three input high gain dc-dc converter for renewable energy sources

In this work, a battery integrated three input converter is proposed. The topology combines a traditional boost converter on one side with a noncoupled inductor-based buffer stage on the other side. Some merits of the converter are a high voltage gain, high output voltage in the battery discharging...

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Main Authors: Azuka, Affam, Yonis M Yonis, Buswig, Al-Khalid, Hj Othman, Shanti Faridah, Salleh, Hazrul, Mohamad Basri, Norhuzaimin, Julai, Kasumawati, Lias
Format: Article
Language:English
Published: Institute of Advanced Engineering and Science (IAES) 2025
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Online Access:http://ir.unimas.my/id/eprint/46861/1/23500-47537-2-RV%20%282%29.pdf
http://ir.unimas.my/id/eprint/46861/
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spelling my.unimas.ir-468612024-12-12T03:12:55Z http://ir.unimas.my/id/eprint/46861/ Battery integrated three input high gain dc-dc converter for renewable energy sources Azuka, Affam Yonis M Yonis, Buswig Al-Khalid, Hj Othman Shanti Faridah, Salleh Hazrul, Mohamad Basri Norhuzaimin, Julai Kasumawati, Lias TK Electrical engineering. Electronics Nuclear engineering In this work, a battery integrated three input converter is proposed. The topology combines a traditional boost converter on one side with a noncoupled inductor-based buffer stage on the other side. Some merits of the converter are a high voltage gain, high output voltage in the battery discharging mode, and a wide range of output voltage. The bidirectional port makes it attractive for renewable energy (RE) sources like solar and fuel cell. The converter can operate in three modes that are determined by the availability of RE sources and the battery state of charge (SOC). The power management algorithm enabled the converter to work in either single input, double input or three input configurations. The duty ratios of assigned power switches controlled the output voltage and the battery charge/discharge. Steady-state analyses, and the dynamic modeling are presented and discussed. At 12 V and 24 V input voltage, output voltage of 315.52 V was delivered in the battery excluded mode. The battery discharging mode delivered 311.57 V while the battery charging mode delivered 301.32 V. The proposed converter can serve low to medium power voltage/ power applications. The hardware experiments verify the workings of the proposed converter Institute of Advanced Engineering and Science (IAES) 2025-02-15 Article PeerReviewed text en http://ir.unimas.my/id/eprint/46861/1/23500-47537-2-RV%20%282%29.pdf Azuka, Affam and Yonis M Yonis, Buswig and Al-Khalid, Hj Othman and Shanti Faridah, Salleh and Hazrul, Mohamad Basri and Norhuzaimin, Julai and Kasumawati, Lias (2025) Battery integrated three input high gain dc-dc converter for renewable energy sources. International Journal of Power Electronics and Drive System (IJPEDS), x (y). pp. 1-14. ISSN 2088-8694 (In Press) https://ijpeds.iaescore.com/index.php/IJPEDS DOI: 10.11591/ijpeds.vx.iy.ppab-cd
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Azuka, Affam
Yonis M Yonis, Buswig
Al-Khalid, Hj Othman
Shanti Faridah, Salleh
Hazrul, Mohamad Basri
Norhuzaimin, Julai
Kasumawati, Lias
Battery integrated three input high gain dc-dc converter for renewable energy sources
description In this work, a battery integrated three input converter is proposed. The topology combines a traditional boost converter on one side with a noncoupled inductor-based buffer stage on the other side. Some merits of the converter are a high voltage gain, high output voltage in the battery discharging mode, and a wide range of output voltage. The bidirectional port makes it attractive for renewable energy (RE) sources like solar and fuel cell. The converter can operate in three modes that are determined by the availability of RE sources and the battery state of charge (SOC). The power management algorithm enabled the converter to work in either single input, double input or three input configurations. The duty ratios of assigned power switches controlled the output voltage and the battery charge/discharge. Steady-state analyses, and the dynamic modeling are presented and discussed. At 12 V and 24 V input voltage, output voltage of 315.52 V was delivered in the battery excluded mode. The battery discharging mode delivered 311.57 V while the battery charging mode delivered 301.32 V. The proposed converter can serve low to medium power voltage/ power applications. The hardware experiments verify the workings of the proposed converter
format Article
author Azuka, Affam
Yonis M Yonis, Buswig
Al-Khalid, Hj Othman
Shanti Faridah, Salleh
Hazrul, Mohamad Basri
Norhuzaimin, Julai
Kasumawati, Lias
author_facet Azuka, Affam
Yonis M Yonis, Buswig
Al-Khalid, Hj Othman
Shanti Faridah, Salleh
Hazrul, Mohamad Basri
Norhuzaimin, Julai
Kasumawati, Lias
author_sort Azuka, Affam
title Battery integrated three input high gain dc-dc converter for renewable energy sources
title_short Battery integrated three input high gain dc-dc converter for renewable energy sources
title_full Battery integrated three input high gain dc-dc converter for renewable energy sources
title_fullStr Battery integrated three input high gain dc-dc converter for renewable energy sources
title_full_unstemmed Battery integrated three input high gain dc-dc converter for renewable energy sources
title_sort battery integrated three input high gain dc-dc converter for renewable energy sources
publisher Institute of Advanced Engineering and Science (IAES)
publishDate 2025
url http://ir.unimas.my/id/eprint/46861/1/23500-47537-2-RV%20%282%29.pdf
http://ir.unimas.my/id/eprint/46861/
https://ijpeds.iaescore.com/index.php/IJPEDS
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score 13.223943