Dynamic response improvement of a bidirectional interleaved buck-boost converter
The robust and fast dynamic response is an essential requirement for the bidirectional interleaved buck-boost converters (IBBs), especially during load disturbance conditions or operation mode switching (from charging mode to discharging mode, or from constant current charging mode to constant volta...
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Nanyang Technological University
2024
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sg-ntu-dr.10356-1742972024-03-29T15:44:12Z Dynamic response improvement of a bidirectional interleaved buck-boost converter Lei, Yihan Tang Yi School of Electrical and Electronic Engineering yitang@ntu.edu.sg Engineering Bidirectional interleaved buck-boost converter The robust and fast dynamic response is an essential requirement for the bidirectional interleaved buck-boost converters (IBBs), especially during load disturbance conditions or operation mode switching (from charging mode to discharging mode, or from constant current charging mode to constant voltage charging mode, etc.). This project aims to develop the simulation model of a 20 kW two-phase IBB converter to realize different dynamic response improvement methods, e.g., the voltage single close loop control, the voltage and current double closed-loop control, and the model predictive control. The developed simulation model and control algorithms will also be validated on a 20 kW two-phase IBB laboratory prototype. Master's degree 2024-03-26T01:16:47Z 2024-03-26T01:16:47Z 2024 Thesis-Master by Coursework Lei, Y. (2024). Dynamic response improvement of a bidirectional interleaved buck-boost converter. Master's thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/174297 https://hdl.handle.net/10356/174297 en application/pdf Nanyang Technological University |
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Engineering Bidirectional interleaved buck-boost converter Lei, Yihan Dynamic response improvement of a bidirectional interleaved buck-boost converter |
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The robust and fast dynamic response is an essential requirement for the bidirectional interleaved buck-boost converters (IBBs), especially during load disturbance conditions or operation mode switching (from charging mode to discharging mode, or from constant current charging mode to constant voltage charging mode, etc.). This project aims to develop the simulation model of a 20 kW two-phase IBB converter to realize different dynamic response improvement methods, e.g., the voltage single close loop control, the voltage and current double closed-loop control, and the model predictive control. The developed simulation model and control algorithms will also be validated on a 20 kW two-phase IBB laboratory prototype. |
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Tang Yi |
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Tang Yi Lei, Yihan |
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Thesis-Master by Coursework |
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Lei, Yihan |
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Lei, Yihan |
title |
Dynamic response improvement of a bidirectional interleaved buck-boost converter |
title_short |
Dynamic response improvement of a bidirectional interleaved buck-boost converter |
title_full |
Dynamic response improvement of a bidirectional interleaved buck-boost converter |
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Dynamic response improvement of a bidirectional interleaved buck-boost converter |
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Dynamic response improvement of a bidirectional interleaved buck-boost converter |
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dynamic response improvement of a bidirectional interleaved buck-boost converter |
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Nanyang Technological University |
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2024 |
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https://hdl.handle.net/10356/174297 |
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