Super-lift converter multilevel DC/AC inverters used in solar panel energy systems
This project presents design, simulation and hardware implementation of super-lift converter multilevel inverter. In order to maintain the output voltage at a constant level, the closed-loop control system was used with PI controller. With proper tuned PI controller, the Super-Lift converter was abl...
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2012
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sg-ntu-dr.10356-509682023-07-07T17:44:04Z Super-lift converter multilevel DC/AC inverters used in solar panel energy systems Yang, Shicong Luo Fang Lin School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Power electronics This project presents design, simulation and hardware implementation of super-lift converter multilevel inverter. In order to maintain the output voltage at a constant level, the closed-loop control system was used with PI controller. With proper tuned PI controller, the Super-Lift converter was able to achieve the design specifications. In the multilevel inverter design, the zener diodes were used to divide the DC voltage from super-lift converter into several levels with equal voltage; with carefully designed switching circuit, the different voltage level was apply to the load at different timing with different duration. A microcontroller AN89S8253 was used for the switching signal design and the program code was written in C. The results of software simulation and hardware implementation for super-lift converter multilevel inverter are presented. Bachelor of Engineering 2012-12-31T01:05:18Z 2012-12-31T01:05:18Z 2012 2012 Final Year Project (FYP) http://hdl.handle.net/10356/50968 en Nanyang Technological University 63 p. application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering::Power electronics Yang, Shicong Super-lift converter multilevel DC/AC inverters used in solar panel energy systems |
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This project presents design, simulation and hardware implementation of super-lift converter multilevel inverter. In order to maintain the output voltage at a constant level, the closed-loop control system was used with PI controller. With proper tuned PI controller, the Super-Lift converter was able to achieve the design specifications. In the multilevel inverter design, the zener diodes were used to divide the DC voltage from super-lift converter into several levels with equal voltage; with carefully designed switching circuit, the different voltage level was apply to the load at different timing with different duration. A microcontroller AN89S8253 was used for the switching signal design and the program code was written in C. The results of software simulation and hardware implementation for super-lift converter multilevel inverter are presented. |
author2 |
Luo Fang Lin |
author_facet |
Luo Fang Lin Yang, Shicong |
format |
Final Year Project |
author |
Yang, Shicong |
author_sort |
Yang, Shicong |
title |
Super-lift converter multilevel DC/AC inverters used in solar panel energy systems |
title_short |
Super-lift converter multilevel DC/AC inverters used in solar panel energy systems |
title_full |
Super-lift converter multilevel DC/AC inverters used in solar panel energy systems |
title_fullStr |
Super-lift converter multilevel DC/AC inverters used in solar panel energy systems |
title_full_unstemmed |
Super-lift converter multilevel DC/AC inverters used in solar panel energy systems |
title_sort |
super-lift converter multilevel dc/ac inverters used in solar panel energy systems |
publishDate |
2012 |
url |
http://hdl.handle.net/10356/50968 |
_version_ |
1772825967479226368 |