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Performance and Empirical Analysis of Photovoltaic Modules Made of Different Technologies Using Capacity Evaluation Method

机译:用容量评估方法对不同技术制成的光伏模块的性能及实证分析

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Performance of 5 photovoltaic (PV) modules made of different technologies (monocrystalline silicon, polycrystalline silicon, amorphous silicon, copper indium selenide and heterojunction with intrinsic layer) is evaluated according to the short-term capacity evaluation method described in IEC TS 61724-2 standard. Measurements for the analysis are 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 which is described in the paper. Results of the performance analysis according to the IEC TS 61724-2 standard indicate that the copper indium selenide PV module Solar Frontier SF150-S has the greatest performance, therefore it is the most suitable PV module for the micro-location of Osijek, Croatia with European humid continental climate. The lowest performance of all studied PV modules is achieved by polycrystalline silicon PV module Bisol BMU 250. Empirical analysis of the relations of various electrical and meteorological parameters is performed and dependencies are evaluated. In the last section, mathematical models of PV module efficiency in relation to the module temperature are derived based on empirical analysis of measurements.
机译:根据IEC TS 61724-2标准中描述的短期容量评估方法,评价由不同技术(单晶硅,多晶硅,无定形硅,无定形硅,铜铟锡,铜铟硒化硅,铜铟硒化硅,氟连接)的性能进行评估。分析的测量是从电气工程,计算机科学和信息技术(Ferit)Osijek的可再生能源实验室开发的数据采集系统中获得的。根据IEC TS 61724-2标准的性能分析结果表明,铜铟硒化型光伏模块太阳前沿SF150-S具有最大的性能,因此它是最合适的PV模块,用于奥西耶克的微观位置,克罗地亚欧洲潮湿的大陆气候。所有研究的PV模块的最低性能由多晶硅PV模块Bisol BMU 250实现。进行各种电气和气象参数关系的经验分析,评估依赖性。在最后一节中,基于测量的经验分析导出了与模块温度相关的PV模块效率的数学模型。

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