Battery Charge Control in Solar Photovoltaic Systems Based on Fuzzy Logic and Jellyfish Optimization Algorithm

Abstract The study focuses on the integration of a fuzzy logic-based Maximum Power Point Tracking (MPPT) system, an optimized proportional Integral-based voltage controller, and the Jellyfish Optimization Algorithm into a solar PV battery setup. This integrated approach aims to enhance energy harvesting efficiency under varying environmental conditions. The study’s innovation lies in effectively addressing challenges posed by diverse environmental factors and loads. The utilization of MATLAB 2022a Simulink for modeling and the Jellyfish Optimization Algorithm for PI-controller tuning further strengthens our findings. Testing scenarios, including constant and variable irradiation, underscore the significant enhancements achieved through the integration of fuzzy MPPT and the Jellyfish Optimization Algorithm with the PI-based voltage controller. These enhancements encompass improved power extraction, optimized voltage regulation, swift settling times, and overall efficiency gains.

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14.11.2023 tarihinden bu yana
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06 Eylül 2024 15:58
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Eser Adı
(dc.title)
Battery Charge Control in Solar Photovoltaic Systems Based on Fuzzy Logic and Jellyfish Optimization Algorithm
Yazar
(dc.contributor.author)
Cevat Rahebi
Yayın Yılı
(dc.date.issued)
2023
Tür
(dc.type)
Makale
Özet
(dc.description.abstract)
Abstract The study focuses on the integration of a fuzzy logic-based Maximum Power Point Tracking (MPPT) system, an optimized proportional Integral-based voltage controller, and the Jellyfish Optimization Algorithm into a solar PV battery setup. This integrated approach aims to enhance energy harvesting efficiency under varying environmental conditions. The study’s innovation lies in effectively addressing challenges posed by diverse environmental factors and loads. The utilization of MATLAB 2022a Simulink for modeling and the Jellyfish Optimization Algorithm for PI-controller tuning further strengthens our findings. Testing scenarios, including constant and variable irradiation, underscore the significant enhancements achieved through the integration of fuzzy MPPT and the Jellyfish Optimization Algorithm with the PI-based voltage controller. These enhancements encompass improved power extraction, optimized voltage regulation, swift settling times, and overall efficiency gains.
Açık Erişim Tarihi
(dc.date.available)
2023-10-18
Yayıncı
(dc.publisher)
Applied Sciences
Dil
(dc.language.iso)
En
Konu Başlıkları
(dc.subject)
PV system
Konu Başlıkları
(dc.subject)
battery storage
Konu Başlıkları
(dc.subject)
MPPT
Konu Başlıkları
(dc.subject)
fuzzy MPPT
Konu Başlıkları
(dc.subject)
PSO
Konu Başlıkları
(dc.subject)
GA
Konu Başlıkları
(dc.subject)
jellyfish optimization
Tek Biçim Adres
(dc.identifier.uri)
https://hdl.handle.net/20.500.14081/2091
ISSN
(dc.identifier.issn)
2076-3417
Dergi
(dc.relation.journal)
Applied Sciences
Esere Katkı Sağlayan
(dc.contributor.other)
Rahebi, Javad
Esere Katkı Sağlayan
(dc.contributor.other)
Agoub, Ramadan Ahmed Ali
Esere Katkı Sağlayan
(dc.contributor.other)
Lopez-Guede, Jose Manuel
Esere Katkı Sağlayan
(dc.contributor.other)
Hancerliogullari, Aybaba
DOI
(dc.identifier.doi)
10.3390/app132011409
Orcid
(dc.identifier.orcid)
0000-0001-9875-4860
Dergi Cilt
(dc.identifier.volume)
13
wosquality
(dc.identifier.wosquality)
Q2
wosauthorid
(dc.contributor.wosauthorid)
DNF-7937-2022
Department
(dc.contributor.department)
Yazılım Mühendisliği
Wos No
(dc.identifier.wos)
WOS:001090602500001
Veritabanları
(dc.source.platform)
Wos
Veritabanları
(dc.source.platform)
Scopus
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