<b>Discrete prediction controller for DC-DC converter</b> - doi: 10.4025/actascitechnol.v36i1.18770

A discrete controller is designed for low power dc-dc switched mode power supplies. The approach is based on time domain and the control loop continuously and concurrently tunes the compensator parameters to meet the converter specifications. A digital state feedback control combined with the load e...

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Main Authors: Rengamani Shenbagalakshmi, Thangaswamy Sree Renga Raja
Format: Article
Language:English
Published: Universidade Estadual de Maringá 2014-01-01
Series:Acta Scientiarum: Technology
Subjects:
Online Access:http://186.233.154.254/ojs/index.php/ActaSciTechnol/article/view/18770
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author Rengamani Shenbagalakshmi
Thangaswamy Sree Renga Raja
author_facet Rengamani Shenbagalakshmi
Thangaswamy Sree Renga Raja
author_sort Rengamani Shenbagalakshmi
collection DOAJ
description A discrete controller is designed for low power dc-dc switched mode power supplies. The approach is based on time domain and the control loop continuously and concurrently tunes the compensator parameters to meet the converter specifications. A digital state feedback control combined with the load estimator provides a complete compensation, which further improves the dynamic performance of the closed loop system. Simulation of digitally controlled Buck converter is performed with MATLAB/Simulink. Experimental results are given to demonstrate the effectiveness of the controller using LabVIEW with a data acquisition card (model DAQ Pad - 6009).
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spelling doaj.art-94483db53af24e0fac3f9feb40e717272022-12-21T23:33:46ZengUniversidade Estadual de MaringáActa Scientiarum: Technology1806-25631807-86642014-01-01361414810.4025/actascitechnol.v36i1.1877010232<b>Discrete prediction controller for DC-DC converter</b> - doi: 10.4025/actascitechnol.v36i1.18770Rengamani Shenbagalakshmi0Thangaswamy Sree Renga Raja1Mookambigai College of EngineeringAnna UniversityA discrete controller is designed for low power dc-dc switched mode power supplies. The approach is based on time domain and the control loop continuously and concurrently tunes the compensator parameters to meet the converter specifications. A digital state feedback control combined with the load estimator provides a complete compensation, which further improves the dynamic performance of the closed loop system. Simulation of digitally controlled Buck converter is performed with MATLAB/Simulink. Experimental results are given to demonstrate the effectiveness of the controller using LabVIEW with a data acquisition card (model DAQ Pad - 6009).http://186.233.154.254/ojs/index.php/ActaSciTechnol/article/view/18770buck converterdigital state feedbackpole placementprediction observerseparation principle
spellingShingle Rengamani Shenbagalakshmi
Thangaswamy Sree Renga Raja
<b>Discrete prediction controller for DC-DC converter</b> - doi: 10.4025/actascitechnol.v36i1.18770
Acta Scientiarum: Technology
buck converter
digital state feedback
pole placement
prediction observer
separation principle
title <b>Discrete prediction controller for DC-DC converter</b> - doi: 10.4025/actascitechnol.v36i1.18770
title_full <b>Discrete prediction controller for DC-DC converter</b> - doi: 10.4025/actascitechnol.v36i1.18770
title_fullStr <b>Discrete prediction controller for DC-DC converter</b> - doi: 10.4025/actascitechnol.v36i1.18770
title_full_unstemmed <b>Discrete prediction controller for DC-DC converter</b> - doi: 10.4025/actascitechnol.v36i1.18770
title_short <b>Discrete prediction controller for DC-DC converter</b> - doi: 10.4025/actascitechnol.v36i1.18770
title_sort b discrete prediction controller for dc dc converter b doi 10 4025 actascitechnol v36i1 18770
topic buck converter
digital state feedback
pole placement
prediction observer
separation principle
url http://186.233.154.254/ojs/index.php/ActaSciTechnol/article/view/18770
work_keys_str_mv AT rengamanishenbagalakshmi bdiscretepredictioncontrollerfordcdcconverterbdoi104025actascitechnolv36i118770
AT thangaswamysreerengaraja bdiscretepredictioncontrollerfordcdcconverterbdoi104025actascitechnolv36i118770