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An efficient controller design of a PV integrated single inductor multiple output DC–DC converter for dynamic voltage and low power applications

In this article, a Single Inductor Multiple Output (SIMO) DC–DC boost converter for driving independent three outputs of dynamic voltage and low power is proposed. Compared with the traditional SIMO DC–DC converter, the proposed work accomplishes (i) independent control of power at each output, (ii)...

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Autores principales: Usman, Mudassar, Asghar, Furqan, Javed, Muhammad Rameez, Virk, Umar Siddique, Jamal, Muhammad Yasir, Waleed, Aashir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10510366/
https://www.ncbi.nlm.nih.gov/pubmed/37724357
http://dx.doi.org/10.1177/00368504231201792
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author Usman, Mudassar
Asghar, Furqan
Javed, Muhammad Rameez
Virk, Umar Siddique
Jamal, Muhammad Yasir
Waleed, Aashir
author_facet Usman, Mudassar
Asghar, Furqan
Javed, Muhammad Rameez
Virk, Umar Siddique
Jamal, Muhammad Yasir
Waleed, Aashir
author_sort Usman, Mudassar
collection PubMed
description In this article, a Single Inductor Multiple Output (SIMO) DC–DC boost converter for driving independent three outputs of dynamic voltage and low power is proposed. Compared with the traditional SIMO DC–DC converter, the proposed work accomplishes (i) independent control of power at each output, (ii) small switch count, (iii) relatively better scalability with increasing output channel, (iv) fast response time, and (v) relatively better efficiency. The core aim of the current article is to implement an efficient controller design of the SIMO DC converter circuit operating in continuous conduction mode for dynamic voltage applications. The SIMO circuit comprises a photovoltaic (PV) array as a renewable energy harvesting source at the input. A hysteretic controller based on direct control with seamless transition control topology is implemented in this model for SIMO operation. This scheme is popular due to its less cost, simple, easy-to-use design architecture, and fast speed of close loop control. The configuration of the solar array is designed to deliver maximum power on the input of the SIMO DC–DC converter. For tracking the maximum power point, incremental conductance with integral control configuration is applied on the PV array with fast speed and efficiency. The MATLAB/Simulink environment is utilized for model configuration. The simulation results show that the proposed SIMO configuration with the PV array provided 100.5 W and 21.7 W for 1000 W/m(2) and 250 W/m(2), respectively.
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spelling pubmed-105103662023-09-21 An efficient controller design of a PV integrated single inductor multiple output DC–DC converter for dynamic voltage and low power applications Usman, Mudassar Asghar, Furqan Javed, Muhammad Rameez Virk, Umar Siddique Jamal, Muhammad Yasir Waleed, Aashir Sci Prog Engineering & Technology In this article, a Single Inductor Multiple Output (SIMO) DC–DC boost converter for driving independent three outputs of dynamic voltage and low power is proposed. Compared with the traditional SIMO DC–DC converter, the proposed work accomplishes (i) independent control of power at each output, (ii) small switch count, (iii) relatively better scalability with increasing output channel, (iv) fast response time, and (v) relatively better efficiency. The core aim of the current article is to implement an efficient controller design of the SIMO DC converter circuit operating in continuous conduction mode for dynamic voltage applications. The SIMO circuit comprises a photovoltaic (PV) array as a renewable energy harvesting source at the input. A hysteretic controller based on direct control with seamless transition control topology is implemented in this model for SIMO operation. This scheme is popular due to its less cost, simple, easy-to-use design architecture, and fast speed of close loop control. The configuration of the solar array is designed to deliver maximum power on the input of the SIMO DC–DC converter. For tracking the maximum power point, incremental conductance with integral control configuration is applied on the PV array with fast speed and efficiency. The MATLAB/Simulink environment is utilized for model configuration. The simulation results show that the proposed SIMO configuration with the PV array provided 100.5 W and 21.7 W for 1000 W/m(2) and 250 W/m(2), respectively. SAGE Publications 2023-09-19 /pmc/articles/PMC10510366/ /pubmed/37724357 http://dx.doi.org/10.1177/00368504231201792 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by-nc/4.0/This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (https://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access page (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Engineering & Technology
Usman, Mudassar
Asghar, Furqan
Javed, Muhammad Rameez
Virk, Umar Siddique
Jamal, Muhammad Yasir
Waleed, Aashir
An efficient controller design of a PV integrated single inductor multiple output DC–DC converter for dynamic voltage and low power applications
title An efficient controller design of a PV integrated single inductor multiple output DC–DC converter for dynamic voltage and low power applications
title_full An efficient controller design of a PV integrated single inductor multiple output DC–DC converter for dynamic voltage and low power applications
title_fullStr An efficient controller design of a PV integrated single inductor multiple output DC–DC converter for dynamic voltage and low power applications
title_full_unstemmed An efficient controller design of a PV integrated single inductor multiple output DC–DC converter for dynamic voltage and low power applications
title_short An efficient controller design of a PV integrated single inductor multiple output DC–DC converter for dynamic voltage and low power applications
title_sort efficient controller design of a pv integrated single inductor multiple output dc–dc converter for dynamic voltage and low power applications
topic Engineering & Technology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10510366/
https://www.ncbi.nlm.nih.gov/pubmed/37724357
http://dx.doi.org/10.1177/00368504231201792
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