Copyright © 2026 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
@article{199845,
author = {RAHUL P and MUKIL VENDHAN B and BHAVAN KARTHI K and NAGARAJAN J},
title = {Design and implementation of a high-gain DC-DC Converter},
journal = {International Journal of Innovative Research in Technology},
year = {2026},
volume = {12},
number = {11},
pages = {13686-13692},
issn = {2349-6002},
url = {https://ijirt.org/article?manuscript=199845},
abstract = {High-gain DC-DC converters play a vital role in different power electronic circuits, such as those that use renewable energy sources, electric vehicles or DC microgrid systems, need a DC-DC converter which converts a small DC input voltage to a large DC output voltage. Typically, conventional boost converter architectures (to change from low DC input voltages to high DC output voltages) require high duty cycles, which leads to increased switching losses or require very high voltage rated switches to perform this conversion. In this paper, a new architecture for creating high gain DC-DC converters using both coupled inductors and voltage multipliers is provided and explained. By using this architecture, a high gain can be produced from a low gain with a low duty cycle. Thus, improving overall circuit performance and decreasing the voltage ratings required on the switch. The majority of this paper addresses the operation of the proposed architecture, how to design the proposed device, simulation results of the proposed converter (measured using MATLAP/Simulink) and experimental validation of the new device.},
keywords = {DC- DC Converter, PWM, Adaptive Control},
month = {April},
}
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