Design of New Nonisolated High Gain Converter for Higher Power Density

A high gain nonisolated DC-DC converter using a single power semiconductor switch is proposed in this article. The operation of the proposed converter is explained under continuous conduction mode (CCM), discontinuous conduction mode (DCM), and boundary conduction mode (BCM). The mathematical expres...

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Main Authors: Ramachandran Rajesh, Natarajan Prabaharan
Format: Article
Language:English
Published: Wiley 2023-01-01
Series:International Transactions on Electrical Energy Systems
Online Access:http://dx.doi.org/10.1155/2023/2011926
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author Ramachandran Rajesh
Natarajan Prabaharan
author_facet Ramachandran Rajesh
Natarajan Prabaharan
author_sort Ramachandran Rajesh
collection DOAJ
description A high gain nonisolated DC-DC converter using a single power semiconductor switch is proposed in this article. The operation of the proposed converter is explained under continuous conduction mode (CCM), discontinuous conduction mode (DCM), and boundary conduction mode (BCM). The mathematical expressions for steady-state voltage gain, voltage stress, and current stress of diodes and switch are provided. Also, the design of inductors and capacitors in the CCM mode is explained with appropriate mathematical equations. The proposed topology is tested with a 200 W prototype at 50 kHz and a 60% duty cycle. The dynamic behavior of the proposed converter is examined by changing the duty cycle value and also load values. The proposed converter is verified with experimental results to prove the effectiveness of its operation. The proposed converter provides higher steady-state voltage gain as compared with recently developed topologies. The efficiency and power density of the proposed converter is 90% and 1.16 kW/L, respectively.
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spelling doaj-art-bc8e2d5b31bf4f7caa65109696c731ea2025-08-20T03:23:19ZengWileyInternational Transactions on Electrical Energy Systems2050-70382023-01-01202310.1155/2023/2011926Design of New Nonisolated High Gain Converter for Higher Power DensityRamachandran Rajesh0Natarajan Prabaharan1Department of EEEDepartment of EEEA high gain nonisolated DC-DC converter using a single power semiconductor switch is proposed in this article. The operation of the proposed converter is explained under continuous conduction mode (CCM), discontinuous conduction mode (DCM), and boundary conduction mode (BCM). The mathematical expressions for steady-state voltage gain, voltage stress, and current stress of diodes and switch are provided. Also, the design of inductors and capacitors in the CCM mode is explained with appropriate mathematical equations. The proposed topology is tested with a 200 W prototype at 50 kHz and a 60% duty cycle. The dynamic behavior of the proposed converter is examined by changing the duty cycle value and also load values. The proposed converter is verified with experimental results to prove the effectiveness of its operation. The proposed converter provides higher steady-state voltage gain as compared with recently developed topologies. The efficiency and power density of the proposed converter is 90% and 1.16 kW/L, respectively.http://dx.doi.org/10.1155/2023/2011926
spellingShingle Ramachandran Rajesh
Natarajan Prabaharan
Design of New Nonisolated High Gain Converter for Higher Power Density
International Transactions on Electrical Energy Systems
title Design of New Nonisolated High Gain Converter for Higher Power Density
title_full Design of New Nonisolated High Gain Converter for Higher Power Density
title_fullStr Design of New Nonisolated High Gain Converter for Higher Power Density
title_full_unstemmed Design of New Nonisolated High Gain Converter for Higher Power Density
title_short Design of New Nonisolated High Gain Converter for Higher Power Density
title_sort design of new nonisolated high gain converter for higher power density
url http://dx.doi.org/10.1155/2023/2011926
work_keys_str_mv AT ramachandranrajesh designofnewnonisolatedhighgainconverterforhigherpowerdensity
AT natarajanprabaharan designofnewnonisolatedhighgainconverterforhigherpowerdensity