Design and implementation of a cost-efficient clamping capacitor boost converter for a hybrid renewable energy system for increased gain to fulfil demands

Power generation plants are built in rural areas to meet the power demands and empower the financial status. The existing method of electrical power generation is difficult to meet the growing population as they are turning to hybrid renewable energy systems to meet the increasing demand. They were...

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Main Authors: KMD Riyaz Ali, W. Abitha Memala
Format: Article
Language:English
Published: Elsevier 2023-09-01
Series:e-Prime: Advances in Electrical Engineering, Electronics and Energy
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2772671123001146
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author KMD Riyaz Ali
W. Abitha Memala
author_facet KMD Riyaz Ali
W. Abitha Memala
author_sort KMD Riyaz Ali
collection DOAJ
description Power generation plants are built in rural areas to meet the power demands and empower the financial status. The existing method of electrical power generation is difficult to meet the growing population as they are turning to hybrid renewable energy systems to meet the increasing demand. They were also not focused on power saving and flow with reduced power loss. The power generated from hybrid renewable energy systems is distributed to rural areas through a DC-DC converter. The DC-DC converter converts the Hybrid Renewable Energy System (HRE) output into a high DC voltage transmitted in a bus. The proposed HRE system consists of solar and wind plants in the network. So, for transferring, saving, and utilizing the power generated from the hybrid renewable energy system, a cost-efficient clamping capacitor boost converter (CCBC) with increased voltage gain is proposed. The CCBC has a clamping capacitor in-built with 2-diodes and 2-capacitors. The voltage gain produced using the proposed CCBC is doubled with the conventional converters. There is no high range of power spikes in the converter's capacitor. This paper explains the architecture and the complete functionality of the CCBC with the simulation results in detail. The simulation results conclude that the proposed CCBC provides cost-efficient high voltage gain converters for HRE systems, providing more than 500 W, which fulfills the demand of a single rural area.
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spelling doaj.art-1f5016864f1b48a79164060de33d937c2023-09-25T04:12:47ZengElseviere-Prime: Advances in Electrical Engineering, Electronics and Energy2772-67112023-09-015100219Design and implementation of a cost-efficient clamping capacitor boost converter for a hybrid renewable energy system for increased gain to fulfil demandsKMD Riyaz Ali0W. Abitha Memala1Research Scholar in Dept. of EEE, Sathyabama Institute of Science and Technology, Chennai, India; Corresponding author.Associate Professor in Dept. of EEE, Sathyabama Institute of Science and Technology, Chennai, IndiaPower generation plants are built in rural areas to meet the power demands and empower the financial status. The existing method of electrical power generation is difficult to meet the growing population as they are turning to hybrid renewable energy systems to meet the increasing demand. They were also not focused on power saving and flow with reduced power loss. The power generated from hybrid renewable energy systems is distributed to rural areas through a DC-DC converter. The DC-DC converter converts the Hybrid Renewable Energy System (HRE) output into a high DC voltage transmitted in a bus. The proposed HRE system consists of solar and wind plants in the network. So, for transferring, saving, and utilizing the power generated from the hybrid renewable energy system, a cost-efficient clamping capacitor boost converter (CCBC) with increased voltage gain is proposed. The CCBC has a clamping capacitor in-built with 2-diodes and 2-capacitors. The voltage gain produced using the proposed CCBC is doubled with the conventional converters. There is no high range of power spikes in the converter's capacitor. This paper explains the architecture and the complete functionality of the CCBC with the simulation results in detail. The simulation results conclude that the proposed CCBC provides cost-efficient high voltage gain converters for HRE systems, providing more than 500 W, which fulfills the demand of a single rural area.http://www.sciencedirect.com/science/article/pii/S2772671123001146Hybrid renewable energy systemClamping capacitor converterPower generationRural Power PlantsSolar-Wind Power System
spellingShingle KMD Riyaz Ali
W. Abitha Memala
Design and implementation of a cost-efficient clamping capacitor boost converter for a hybrid renewable energy system for increased gain to fulfil demands
e-Prime: Advances in Electrical Engineering, Electronics and Energy
Hybrid renewable energy system
Clamping capacitor converter
Power generation
Rural Power Plants
Solar-Wind Power System
title Design and implementation of a cost-efficient clamping capacitor boost converter for a hybrid renewable energy system for increased gain to fulfil demands
title_full Design and implementation of a cost-efficient clamping capacitor boost converter for a hybrid renewable energy system for increased gain to fulfil demands
title_fullStr Design and implementation of a cost-efficient clamping capacitor boost converter for a hybrid renewable energy system for increased gain to fulfil demands
title_full_unstemmed Design and implementation of a cost-efficient clamping capacitor boost converter for a hybrid renewable energy system for increased gain to fulfil demands
title_short Design and implementation of a cost-efficient clamping capacitor boost converter for a hybrid renewable energy system for increased gain to fulfil demands
title_sort design and implementation of a cost efficient clamping capacitor boost converter for a hybrid renewable energy system for increased gain to fulfil demands
topic Hybrid renewable energy system
Clamping capacitor converter
Power generation
Rural Power Plants
Solar-Wind Power System
url http://www.sciencedirect.com/science/article/pii/S2772671123001146
work_keys_str_mv AT kmdriyazali designandimplementationofacostefficientclampingcapacitorboostconverterforahybridrenewableenergysystemforincreasedgaintofulfildemands
AT wabithamemala designandimplementationofacostefficientclampingcapacitorboostconverterforahybridrenewableenergysystemforincreasedgaintofulfildemands