研究目的
To evaluate the performance of 5 photovoltaic (PV) modules made of different technologies using the short-term capacity evaluation method described in IEC TS 61724-2 standard and to derive mathematical models of PV module efficiency in relation to the module temperature based on empirical analysis of measurements.
研究成果
The CIS PV module Solar Frontier SF150-S has the greatest performance according to the IEC TS 61724-2 standard, therefore it is the most suitable PV module for the European humid continental climate conditions at micro-location of FERIT Osijek, Croatia. On the opposite, p-Si PV module Bisol BMU 250 PV has the lowest performance of all studied PV modules. Empirical mathematical models of efficiency depending on module temperature were derived for each PV module.
研究不足
This study uses measurements for only 5 days in a year, therefore all results need to be additionally confirmed with long-term measurements.
1:Experimental Design and Method Selection:
The performance of 5 PV modules made of different technologies was evaluated according to the short-term capacity evaluation method described in IEC TS 61724-2 standard.
2:Sample Selection and Data Sources:
Measurements for the analysis were obtained from the data acquisition system developed by the Laboratory for Renewable Energy Sources at the Faculty of Electrical Engineering, Computer Science and Information Technology (FERIT) Osijek.
3:List of Experimental Equipment and Materials:
The studied PV modules were m-Si Bisol BMO 250, p-Si Bisol BMU 250, a-Si Masdar MPV100-S, CIS Solar Frontier SF150-S, and HIT Panasonic VBHN240SE
4:Experimental Procedures and Operational Workflow:
The capacity evaluation method was performed for 5 relatively sunny days during October
5:Each measuring point (electrical and meteorological) represents 1-minute average. Data Analysis Methods:
20 The performance index for power (PIP) was calculated and empirical mathematical models of efficiency depending on module temperature for every PV module were derived.
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