Title :
Performance Degradation of Various PV Module Technologies in Tropical Singapore
Author :
Jia Ying Ye ; Reindl, Thomas ; Aberle, Armin G. ; Walsh, Timothy M.
Author_Institution :
Solar Energy Res. Inst. of Singapore, Nat. Univ. of Singapore, Singapore, Singapore
Abstract :
The performance of ten photovoltaic (PV) modules with nine different solar cell technologies (and one different module construction) is monitored in the tropical climate of Singapore. The types of modules included in this study are monocrystalline Si (glass-backsheet with frame and glass-glass without frame), heterojunction crystalline Si, monocrystalline Si back-contact, multicrystalline Si, double-junction “micromorph” Si, single-junction/double-junction amorphous Si, CdTe, and CIGS. Three years of outdoor monitoring data are used to extract degradation trends of the performance of the various modules. Statistical decomposition methods are used to extract trends for performance ratio (PR), short-circuit current (ISC), open-circuit voltage (VOC), and fill factor (FF). The degradation rates of the monocrystalline Si modules are found to be equal to or less than -0.8% per year, mainly contributed by the decrease in ISC. The multicrystalline Si module shows a slightly higher degradation rate of -1.0% per year. The amorphous Si, micromorph Si, and CdTe modules show degradation rates of around -2% per year. The CIGS module showed an exceptionally high degradation rate of -6% per year. The decrease in FF and VOC is found to be significant for all the thin-film modules but not for the crystalline silicon modules.
Keywords :
II-VI semiconductors; amorphous semiconductors; cadmium compounds; copper compounds; elemental semiconductors; gallium compounds; indium compounds; semiconductor heterojunctions; semiconductor thin films; short-circuit currents; silicon; solar cells; statistical analysis; ternary semiconductors; CIGS module; CdTe; Cu(InGa)Se2; Si; double-junction amorphous silicon; double-junction micromorph silicon; fill factor; glass backsheet; heterojunction crystalline silicon; monocrystalline silicon back-contact; multicrystalline silicon; open-circuit voltage; outdoor monitoring; performance degradation; photovoltaic modules; short-circuit current; single-junction amorphous silicon; solar cell technologies; statistical decomposition methods; thin-film modules; tropical Singapore; Degradation; Market research; Photovoltaic systems; Short-circuit currents; Silicon; Temperature measurement; Degradation rate; PV module; tropical climate;
Journal_Title :
Photovoltaics, IEEE Journal of
DOI :
10.1109/JPHOTOV.2014.2338051