Implementation and control of a high gain DC-DC converter based on an active switched-inductor and passive switched-capacitor networks

The purpose of this project is to design and implement analog low-order current-mode controllers to regulate a high order DC-DC boost converter. These controllers are designed to satisfy the robustness and tracking capabilities criteria. Experimental results were provided to verify these criteria we...

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Bibliographic Details
Main Author: Yong, Si Yin
Other Authors: Chan Chok You, John
Format: Final Year Project (FYP)
Language:English
Published: 2019
Subjects:
Online Access:http://hdl.handle.net/10356/77689
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author Yong, Si Yin
author2 Chan Chok You, John
author_facet Chan Chok You, John
Yong, Si Yin
author_sort Yong, Si Yin
collection NTU
description The purpose of this project is to design and implement analog low-order current-mode controllers to regulate a high order DC-DC boost converter. These controllers are designed to satisfy the robustness and tracking capabilities criteria. Experimental results were provided to verify these criteria were met. The project was supposedly to be carried out in 2 stages, simulation followed by experiment. Computer simulation with the software PSIM has been of great importance contributing to this project. It was carried out to improve efficiency and give a gauge of what one should do. In addition, with simulation no risks are involved. However, in the report PSIM software results are not shown. Instead, only experimental results are shown.
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spelling ntu-10356/776892023-07-07T16:59:39Z Implementation and control of a high gain DC-DC converter based on an active switched-inductor and passive switched-capacitor networks Yong, Si Yin Chan Chok You, John School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering The purpose of this project is to design and implement analog low-order current-mode controllers to regulate a high order DC-DC boost converter. These controllers are designed to satisfy the robustness and tracking capabilities criteria. Experimental results were provided to verify these criteria were met. The project was supposedly to be carried out in 2 stages, simulation followed by experiment. Computer simulation with the software PSIM has been of great importance contributing to this project. It was carried out to improve efficiency and give a gauge of what one should do. In addition, with simulation no risks are involved. However, in the report PSIM software results are not shown. Instead, only experimental results are shown. Bachelor of Engineering (Electrical and Electronic Engineering) 2019-06-04T03:52:33Z 2019-06-04T03:52:33Z 2019 Final Year Project (FYP) http://hdl.handle.net/10356/77689 en Nanyang Technological University 49 p. application/pdf
spellingShingle DRNTU::Engineering::Electrical and electronic engineering
Yong, Si Yin
Implementation and control of a high gain DC-DC converter based on an active switched-inductor and passive switched-capacitor networks
title Implementation and control of a high gain DC-DC converter based on an active switched-inductor and passive switched-capacitor networks
title_full Implementation and control of a high gain DC-DC converter based on an active switched-inductor and passive switched-capacitor networks
title_fullStr Implementation and control of a high gain DC-DC converter based on an active switched-inductor and passive switched-capacitor networks
title_full_unstemmed Implementation and control of a high gain DC-DC converter based on an active switched-inductor and passive switched-capacitor networks
title_short Implementation and control of a high gain DC-DC converter based on an active switched-inductor and passive switched-capacitor networks
title_sort implementation and control of a high gain dc dc converter based on an active switched inductor and passive switched capacitor networks
topic DRNTU::Engineering::Electrical and electronic engineering
url http://hdl.handle.net/10356/77689
work_keys_str_mv AT yongsiyin implementationandcontrolofahighgaindcdcconverterbasedonanactiveswitchedinductorandpassiveswitchedcapacitornetworks