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A Step-Up Converter with Large Voltage Gain and Low Voltage Rating on Capacitors

Journal
Energies
ISSN
1996-1073
Date Issued
2022
Author(s)
Miguel Ramirez-Carrillo
Susana Ortega-Cisneros
Rosas-caro, Julio  
Facultad de Ingeniería - CampGDL  
Jorge Rivera
Jesus E. Valdez-Resendiz
Valderrabano-Gonzalez, Antonio  
Facultad de Ingeniería - CampGDL  
Mayo Maldonado, Jonathan
Facultad de Ingeniería - CampGDL  
Type
text::journal::journal article
DOI
10.3390/en15217944
URL
https://scripta.up.edu.mx/handle/20.500.12552/3864
Abstract
<jats:p>Step-up converters are widely used in many applications, such as renewable energy generation with photovoltaic panels and fuel cell stacks. In many cases, the required voltage gain is larger for those applications than a traditional boost converter can achieve. Several large-voltage gain converters have been recently studied. This paper introduces a converter topology in which the voltage gain is larger than a traditional boost converter. The main advantages of the proposed topology are: (i) it provides a large voltage gain without the use of an extreme duty cycle; (ii) its capacitors require a smaller voltage to be sustained compared with other, similar state-of-the-art converters; (iii) the voltage among the ground input and output is not pulsating; and (iv) it can be synthesized with commercial, off-the-shelf half-bridge packed transistors. The proposed converter can be employed in different applications, such as distributed generation and microgrids. This paper presents the steady-state analysis of the proposed converter in the continuous conduction mode, a short comparison with similar topologies, and their voltage on capacitors. Computer-based simulation results are provided to verify the principle of the proposed converter in different operating conditions.</jats:p>

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