Implementation and control of a hybrid non-isolated DC-DC boost converter
This report presents the design, implementation, and control of a hybrid non-isolated dc-dc boost converter. The hybrid non-isolated DC-DC boost converter has a higher dc voltage gain than that of the conventional boost converter. The control of the hybrid non-isolated dc-dc boost converter is carri...
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2020
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sg-ntu-dr.10356-1396302023-07-07T18:39:09Z Implementation and control of a hybrid non-isolated DC-DC boost converter Goh, Cindy Wan Yi Chan Chok You, John School of Electrical and Electronic Engineering ecychan@ntu.edu.sg Engineering::Electrical and electronic engineering::Control and instrumentation::Control engineering This report presents the design, implementation, and control of a hybrid non-isolated dc-dc boost converter. The hybrid non-isolated DC-DC boost converter has a higher dc voltage gain than that of the conventional boost converter. The control of the hybrid non-isolated dc-dc boost converter is carried out using a current-mode controller. The aim is to regulate the output voltage to the desired value in the presence of load and input voltage disturbances. Experimental and simulation results are provided to show the performance of the controller under different operating conditions. Bachelor of Engineering (Electrical and Electronic Engineering) 2020-05-20T08:54:39Z 2020-05-20T08:54:39Z 2020 Final Year Project (FYP) https://hdl.handle.net/10356/139630 en A1030-191 application/pdf Nanyang Technological University |
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Engineering::Electrical and electronic engineering::Control and instrumentation::Control engineering Goh, Cindy Wan Yi Implementation and control of a hybrid non-isolated DC-DC boost converter |
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This report presents the design, implementation, and control of a hybrid non-isolated dc-dc boost converter. The hybrid non-isolated DC-DC boost converter has a higher dc voltage gain than that of the conventional boost converter. The control of the hybrid non-isolated dc-dc boost converter is carried out using a current-mode controller. The aim is to regulate the output voltage to the desired value in the presence of load and input voltage disturbances. Experimental and simulation results are provided to show the performance of the controller under different operating conditions. |
author2 |
Chan Chok You, John |
author_facet |
Chan Chok You, John Goh, Cindy Wan Yi |
format |
Final Year Project |
author |
Goh, Cindy Wan Yi |
author_sort |
Goh, Cindy Wan Yi |
title |
Implementation and control of a hybrid non-isolated DC-DC boost converter |
title_short |
Implementation and control of a hybrid non-isolated DC-DC boost converter |
title_full |
Implementation and control of a hybrid non-isolated DC-DC boost converter |
title_fullStr |
Implementation and control of a hybrid non-isolated DC-DC boost converter |
title_full_unstemmed |
Implementation and control of a hybrid non-isolated DC-DC boost converter |
title_sort |
implementation and control of a hybrid non-isolated dc-dc boost converter |
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Nanyang Technological University |
publishDate |
2020 |
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https://hdl.handle.net/10356/139630 |
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1772827244611239936 |