Performance Evaluation of Photovoltaic Systems using Simulation Model and Solmetric Analyzer

A. Fezzani, I. H. Mahammed, L. Zaghba, M. Benbitour Khennane, A. Bouchakour, S. Hamid Oudjana, S. Drid
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Abstract

The performance of photovoltaic (PV) generator is affected by outdoor conditions. Outdoor testing consists installing a generator, and collecting electrical parameters data and climatic data over a certain period of time. It can also include the study of long-term performance under real work conditions. Tests are operated in Applied Research in Renewable Energy (URAER) located in desert region of Ghardaïa in southern Algeria characterized by high irradiation and temperature levels. The degradation of PV generator with temperature and time exposure to sunlight contributes significantly to the final output from the PV generator, as the output reduces each year. This paper presents an analytical and experimental evaluation of the performance of generator. First, this study used the data provided by analyzer PV (Solmetric PVA-600) translated to standard conditions. Secondly, it based on the results of modeling and simulation with MATLAB of the PV field of the mini-photovoltaic plant connected to the grid installed in the URAER
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基于仿真模型和Solmetric分析仪的光伏系统性能评估
光伏发电机组的性能受到室外条件的影响。室外测试包括安装发电机,收集一定时间内的电气参数数据和气候数据。它还可以包括在实际工作条件下的长期表现研究。试验是在位于阿尔及利亚南部沙漠地区Ghardaïa的可再生能源应用研究(URAER)进行的,该地区辐射和温度都很高。随着温度和暴露在阳光下的时间的推移,光伏发电机的退化对光伏发电机的最终输出有很大的影响,因为输出每年都在减少。本文对发电机的性能进行了分析和实验评价。首先,本研究使用分析器PV (Solmetric PVA-600)提供的数据转换为标准条件。其次,基于MATLAB对安装在URAER中的并网小型光伏电站的光伏场进行建模和仿真
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