Sungwoo Choi
National Institute of Advanced Industrial Science and Technology
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Publication
Featured researches published by Sungwoo Choi.
Japanese Journal of Applied Physics | 2017
Sungwoo Choi; Ritsuko Sato; Tetsuyuki Ishii; Yasuo Chiba; Atsushi Masuda
The performance of photovoltaic (PV) modules deteriorates with time due to outdoor exposure. We investigated the time-dependent changes in PV modules and evaluated the amount of power generated during their lifetime. Once a year, the exposed modules were removed and measured under standard test conditions using a solar simulator. Their outputs were measured indoors and normalized to nominal values. In addition, the relationship between the indoor measurement and the energy yield for thin-film PV modules will be reported. In CIGS PV modules, the normalized maximum power (P MAX) and performance ratio (PR) differ with the type of module. The P MAX and PR of CdTe PV modules significantly decrease after outdoor exposure for three years. These results help to determine the characteristics of the time-dependent changes in the P MAX of PV modules due to outdoor exposure.
Japanese Journal of Applied Physics | 2017
Tetsuyuki Ishii; Ritsuko Sato; Sungwoo Choi; Yasuo Chiba; Atsushi Masuda
The purpose of this study is to develop a method of estimating the electric power from various photovoltaic technologies with high precision. The actual outdoor performance of eight kinds (12 types) of photovoltaic (PV) modules has been measured since January 2012 in order to verify the precision of the method. Using ambient climatic datasets including solar irradiance, module temperature, and solar spectrum, the performance of these PV modules is corrected to the performance under standard test conditions (STC), which should be constant ideally. The results indicate that the performance of bulk crystalline silicon (c-Si) and copper indium gallium diselenide (CIGS) PV modules can be estimated with high precision (approximately less than ±2%). However, the estimation precision of thin-film Si and cadmium telluride (CdTe) PV modules is low because of the initial light-induced degradation and seasonal variation due to metastability.
Thin Solid Films | 2018
Sungwoo Choi; Tetsuyuki Ishii; Ritsuko Sato; Yasuo Chiba; Atsushi Masuda
The Japan Society of Applied Physics | 2018
Shigeomi Hara; Jaffar Abdu; Sungwoo Choi; Yasuo Chiba; Atsushi Masuda; Makoto Kasu
The Japan Society of Applied Physics | 2018
Sungwoo Choi; Yasuo Chiba; Ritsuko Sato; Tetsuyuki Ishii; Atsushi Masuda
The Japan Society of Applied Physics | 2018
Yasuo Chiba; Sungwoo Choi; Ritsuko Sato; Tetsuyuki Ishii; Atsushi Masuda
The Japan Society of Applied Physics | 2018
Tetsuyuki Ishii; Sungwoo Choi; Ritsuko Sato; Yasuo Chiba; Atsushi Masuda
Japanese Journal of Applied Physics | 2018
Yasuo Chiba; Tetsuyuki Ishii; Ritsuko Sato; Sungwoo Choi; Atsushi Masuda
Japanese Journal of Applied Physics | 2018
Makoto Kasu; Jaffar Abdu; Shigeomi Hara; Sungwoo Choi; Yasuo Chiba; Atsushi Masuda
The Japan Society of Applied Physics | 2017
Yasuo Chiba; Sungwoo Choi; Ritsuko Sato; Tetsuyuki Ishii; Atsushi Masuda
Collaboration
Dive into the Sungwoo Choi's collaboration.
National Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputs