Power Performance Evaluation of Standalone Renewable Energy Source Energy Management Using Pass Filter

Hybrid energy storage systems have shown promise in enhancing solar panel systems reliability and efficiency. However, managing the power distribution balance with multiple energy storage units remains a challenge. This research addresses power distribution balancing during solar irradiation intermi...

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Main Authors: Indah Sulistiyowati, Jamaaluddin Jamaaluddin, Izza Anshory
Format: Article
Language:English
Published: Khairun University, Faculty of Engineering, Department of Electrical Engineering 2023-09-01
Series:Protek: Jurnal Ilmiah Teknik Elektro
Subjects:
Online Access:https://ejournal.unkhair.ac.id/index.php/protk/article/view/6082
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author Indah Sulistiyowati
Jamaaluddin Jamaaluddin
Izza Anshory
author_facet Indah Sulistiyowati
Jamaaluddin Jamaaluddin
Izza Anshory
author_sort Indah Sulistiyowati
collection DOAJ
description Hybrid energy storage systems have shown promise in enhancing solar panel systems reliability and efficiency. However, managing the power distribution balance with multiple energy storage units remains a challenge. This research addresses power distribution balancing during solar irradiation intermittency by employing a first-order filter with lowpass and highpass characteristics. The study aims to investigate energy and power management issues for off-grid electrical systems using this filter. Results from numerical simulations and experiments with a hybrid energy storage setup comprising a battery and supercapacitor show that the first-order filter effectively allocates the first-order signal to the main energy storage and subsequent orders to the supporting energy storage. During increased intermittency, the battery contributes 62 W and stores 387 W, while the supercapacitor contributes 167 W and stores 297 W. Conversely, during reduced intermittency, the battery stores 390 W and contributes 62 W, and the supercapacitor stores 295 W and contributes 164 W. The findings demonstrate the filter's efficacy in optimizing power distribution balance within hybrid energy storage systems. However, using the supercapacitor as the main energy storage does not result in higher power efficiency compared to the battery. In conclusion, the First Order Filter presents a viable solution for addressing power distribution challenges in hybrid energy storage systems, contributing to improved energy and power management for off-grid electrical systems. Further research on cost-effectiveness, maintenance, and environmental impact is warranted for practical implementation
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spelling doaj.art-e93a068565bf477994bdf593db4243c32023-09-09T07:31:22ZengKhairun University, Faculty of Engineering, Department of Electrical EngineeringProtek: Jurnal Ilmiah Teknik Elektro2354-89242527-95722023-09-0110315816310.33387/protk.v10i3.60823578Power Performance Evaluation of Standalone Renewable Energy Source Energy Management Using Pass FilterIndah Sulistiyowati0Jamaaluddin Jamaaluddin1Izza Anshory2Universitas Muhammadiyah SidoarjoUniversitas Muhammadiyah SidoarjoUniversitas Muhammadiyah SidoarjoHybrid energy storage systems have shown promise in enhancing solar panel systems reliability and efficiency. However, managing the power distribution balance with multiple energy storage units remains a challenge. This research addresses power distribution balancing during solar irradiation intermittency by employing a first-order filter with lowpass and highpass characteristics. The study aims to investigate energy and power management issues for off-grid electrical systems using this filter. Results from numerical simulations and experiments with a hybrid energy storage setup comprising a battery and supercapacitor show that the first-order filter effectively allocates the first-order signal to the main energy storage and subsequent orders to the supporting energy storage. During increased intermittency, the battery contributes 62 W and stores 387 W, while the supercapacitor contributes 167 W and stores 297 W. Conversely, during reduced intermittency, the battery stores 390 W and contributes 62 W, and the supercapacitor stores 295 W and contributes 164 W. The findings demonstrate the filter's efficacy in optimizing power distribution balance within hybrid energy storage systems. However, using the supercapacitor as the main energy storage does not result in higher power efficiency compared to the battery. In conclusion, the First Order Filter presents a viable solution for addressing power distribution challenges in hybrid energy storage systems, contributing to improved energy and power management for off-grid electrical systems. Further research on cost-effectiveness, maintenance, and environmental impact is warranted for practical implementationhttps://ejournal.unkhair.ac.id/index.php/protk/article/view/6082battery, efficiency, first-order filter, photovoltaic, supercapacitor
spellingShingle Indah Sulistiyowati
Jamaaluddin Jamaaluddin
Izza Anshory
Power Performance Evaluation of Standalone Renewable Energy Source Energy Management Using Pass Filter
Protek: Jurnal Ilmiah Teknik Elektro
battery, efficiency, first-order filter, photovoltaic, supercapacitor
title Power Performance Evaluation of Standalone Renewable Energy Source Energy Management Using Pass Filter
title_full Power Performance Evaluation of Standalone Renewable Energy Source Energy Management Using Pass Filter
title_fullStr Power Performance Evaluation of Standalone Renewable Energy Source Energy Management Using Pass Filter
title_full_unstemmed Power Performance Evaluation of Standalone Renewable Energy Source Energy Management Using Pass Filter
title_short Power Performance Evaluation of Standalone Renewable Energy Source Energy Management Using Pass Filter
title_sort power performance evaluation of standalone renewable energy source energy management using pass filter
topic battery, efficiency, first-order filter, photovoltaic, supercapacitor
url https://ejournal.unkhair.ac.id/index.php/protk/article/view/6082
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AT izzaanshory powerperformanceevaluationofstandalonerenewableenergysourceenergymanagementusingpassfilter