Control of a high voltage gain dc-dc boost converter using the Arduino microcontroller
In this report, the regulation of a super-lift re-lift (SLRL) Luo converter using an Arduino Due is described. The super-Lift Re-Lift (SLRL) Luo converter is an improved version converter as compared to the conventional DC-DC boost converter. It produces a higher output voltage as compared to the co...
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2020
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sg-ntu-dr.10356-1386382023-07-07T18:06:51Z Control of a high voltage gain dc-dc boost converter using the Arduino microcontroller Ong, Li Ting Chan Chok You, John School of Electrical and Electronic Engineering ecychan@ntu.edu.sg Engineering::Electrical and electronic engineering In this report, the regulation of a super-lift re-lift (SLRL) Luo converter using an Arduino Due is described. The super-Lift Re-Lift (SLRL) Luo converter is an improved version converter as compared to the conventional DC-DC boost converter. It produces a higher output voltage as compared to the conventional converter. Depending on the required output voltage, different level of lift cells can be added. The design and implementation of the converter and three different controllers are presented in this report. Some experimental results are also given to illustrate the performance of the controllers implemented using the Arduino Due. Bachelor of Engineering (Electrical and Electronic Engineering) 2020-05-11T05:46:10Z 2020-05-11T05:46:10Z 2020 Final Year Project (FYP) https://hdl.handle.net/10356/138638 en A1027-191 application/pdf Nanyang Technological University |
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Engineering::Electrical and electronic engineering Ong, Li Ting Control of a high voltage gain dc-dc boost converter using the Arduino microcontroller |
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In this report, the regulation of a super-lift re-lift (SLRL) Luo converter using an Arduino Due is described. The super-Lift Re-Lift (SLRL) Luo converter is an improved version converter as compared to the conventional DC-DC boost converter. It produces a higher output voltage as compared to the conventional converter. Depending on the required output voltage, different level of lift cells can be added. The design and implementation of the converter and three different controllers are presented in this report. Some experimental results are also given to illustrate the performance of the controllers implemented using the Arduino Due. |
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Chan Chok You, John |
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Chan Chok You, John Ong, Li Ting |
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Final Year Project |
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Ong, Li Ting |
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Ong, Li Ting |
title |
Control of a high voltage gain dc-dc boost converter using the Arduino microcontroller |
title_short |
Control of a high voltage gain dc-dc boost converter using the Arduino microcontroller |
title_full |
Control of a high voltage gain dc-dc boost converter using the Arduino microcontroller |
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Control of a high voltage gain dc-dc boost converter using the Arduino microcontroller |
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Control of a high voltage gain dc-dc boost converter using the Arduino microcontroller |
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control of a high voltage gain dc-dc boost converter using the arduino microcontroller |
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Nanyang Technological University |
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2020 |
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https://hdl.handle.net/10356/138638 |
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