High Efficient and High Step-Up Dual Switches Converter Based on Three Coupled Inductors

AbstractThis paper proposes a novel high step-up converter suitable for distributed generation using renewable power sources. The proposed converter includes a dual switches structure, two voltage multiplier cells and a three-windings coupled inductor for achieving high voltage gain. The configurati...

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Main Authors: Hossein Shojaeian, Saeed Hasanzadeh, Mojtaba Heydari
Format: Article
Language:English
Published: University of Sistan and Baluchestan 2018-09-01
Series:International Journal of Industrial Electronics, Control and Optimization
Subjects:
Online Access:https://ieco.usb.ac.ir/article_4170_082d9ddbcd96ebfc7a87626fb7d2b43b.pdf
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author Hossein Shojaeian
Saeed Hasanzadeh
Mojtaba Heydari
author_facet Hossein Shojaeian
Saeed Hasanzadeh
Mojtaba Heydari
author_sort Hossein Shojaeian
collection DOAJ
description AbstractThis paper proposes a novel high step-up converter suitable for distributed generation using renewable power sources. The proposed converter includes a dual switches structure, two voltage multiplier cells and a three-windings coupled inductor for achieving high voltage gain. The configuration of the proposed converter not only reduces the voltage and current stresses of the switches, but also restricts the input source current, which reduces transmission losses and increases the lifetime of the input source. In the proposed converter, the multiplier cells are charged during the switch-on and switch-off periods, which cause to enhance the voltage gain of the converter and improve its productivity. Another feature of the proposed converter is that the inductive leakage energy of the coupled inductor is recycled through a passive clamping circuit which, in turn, has a considerable impact on system efficiency. A comparison is conducted between the performance of the proposed converter and the counterpart converters to demonstrate the proposed converter’s superiority in terms of voltage gain, voltage stress across the switches and diodes and number of components. Theoretical analysis and simulation results are provided to demonstrate the authenticity of the proposed converter.
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spelling doaj.art-096272d4996c4785930802b0a6e2feb62022-12-22T00:44:51ZengUniversity of Sistan and BaluchestanInternational Journal of Industrial Electronics, Control and Optimization2645-35172645-35682018-09-011214315210.22111/ieco.2018.24422.10264170High Efficient and High Step-Up Dual Switches Converter Based on Three Coupled InductorsHossein Shojaeian0Saeed Hasanzadeh1Mojtaba Heydari2Faculty of Electrical and Computer Engineering, Qom University of Technology, Qom, IranDepartment of electrical and computer Engineering, Qom university of Technology, Qom, IranFaculty of Electrical and Computer Engineering, Qom University of Technology, Qom, IranAbstractThis paper proposes a novel high step-up converter suitable for distributed generation using renewable power sources. The proposed converter includes a dual switches structure, two voltage multiplier cells and a three-windings coupled inductor for achieving high voltage gain. The configuration of the proposed converter not only reduces the voltage and current stresses of the switches, but also restricts the input source current, which reduces transmission losses and increases the lifetime of the input source. In the proposed converter, the multiplier cells are charged during the switch-on and switch-off periods, which cause to enhance the voltage gain of the converter and improve its productivity. Another feature of the proposed converter is that the inductive leakage energy of the coupled inductor is recycled through a passive clamping circuit which, in turn, has a considerable impact on system efficiency. A comparison is conducted between the performance of the proposed converter and the counterpart converters to demonstrate the proposed converter’s superiority in terms of voltage gain, voltage stress across the switches and diodes and number of components. Theoretical analysis and simulation results are provided to demonstrate the authenticity of the proposed converter.https://ieco.usb.ac.ir/article_4170_082d9ddbcd96ebfc7a87626fb7d2b43b.pdfhigh step-up converterdual switches structurethree-winding coupled inductorvoltage multiplier celllow voltage stress
spellingShingle Hossein Shojaeian
Saeed Hasanzadeh
Mojtaba Heydari
High Efficient and High Step-Up Dual Switches Converter Based on Three Coupled Inductors
International Journal of Industrial Electronics, Control and Optimization
high step-up converter
dual switches structure
three-winding coupled inductor
voltage multiplier cell
low voltage stress
title High Efficient and High Step-Up Dual Switches Converter Based on Three Coupled Inductors
title_full High Efficient and High Step-Up Dual Switches Converter Based on Three Coupled Inductors
title_fullStr High Efficient and High Step-Up Dual Switches Converter Based on Three Coupled Inductors
title_full_unstemmed High Efficient and High Step-Up Dual Switches Converter Based on Three Coupled Inductors
title_short High Efficient and High Step-Up Dual Switches Converter Based on Three Coupled Inductors
title_sort high efficient and high step up dual switches converter based on three coupled inductors
topic high step-up converter
dual switches structure
three-winding coupled inductor
voltage multiplier cell
low voltage stress
url https://ieco.usb.ac.ir/article_4170_082d9ddbcd96ebfc7a87626fb7d2b43b.pdf
work_keys_str_mv AT hosseinshojaeian highefficientandhighstepupdualswitchesconverterbasedonthreecoupledinductors
AT saeedhasanzadeh highefficientandhighstepupdualswitchesconverterbasedonthreecoupledinductors
AT mojtabaheydari highefficientandhighstepupdualswitchesconverterbasedonthreecoupledinductors