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Performance evaluation and characterization of different photovoltaic technologies under the coastal, desertic climate conditions of Lima, Peru

机译:秘鲁利马沿海,荒漠气候条件下不同光伏技术的性能评估和表征

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This work presents the firsts results of the experimental characterization campaign under outdoor conditions carried out with three different photovoltaic (PV) module technologies: Standard poly-crystalline silicon (poly-Si) aluminum back surface field (Al-BSF) cells, mono-crystalline (c-Si) Heterojunction with Intrinsic Thin-Layer (HIT) cells, and amorphous and microcrystalline silicon (a-Si/μc-Si) thin-film tandem cells. We studied the behavior of these PV technologies and their performance in Lima's desertic and coastal climate during the period from May 2019 to July 2019. For this study, a new outdoor-PV laboratory was implemented at the Pontificia Universidad Catolica del Peru (PUCP) with the help of the IDEA research group of the University of Jaen (IDA). Spain. The laboratory enables the characterization of PV modules by extracting the electrical parameters from the current-voltage (I-V) curve under outdoor conditions and by measuring the irradiance, the spectral distribution, the panel temperature, and the weather conditions. As a first step, the nominal maximum power of the PV modules under standard test conditions is obtained from the outdoor data. Then, an analysis of the different PV technologies' performance under the local climate conditions is presented by applying the Osterwald and the constant fill factor methods to compare the modeled and experimental maximum power.
机译:这项工作展示了在户外条件下使用三种不同的光伏(PV)组件技术进行的实验表征活动的第一批结果:标准多晶硅(poly-Si)铝背面场(Al-BSF)电池,单晶(c-Si)异质结,具有本征薄膜(HIT)电池以及非晶和微晶硅(a-Si /μc-Si)薄膜串联电池。我们研究了这些光伏技术的行为及其在2019年5月至2019年7月期间在利马的沙漠和沿海气候中的性能。为进行这项研究,秘鲁加泰罗尼亚天主教大学(PUCP)实施了一个新的室外光伏实验室。哈恩大学(IDA)IDEA研究小组的帮助。西班牙。该实验室通过在室外条件下从电流-电压(I-V)曲线中提取电气参数,并测量辐照度,光谱分布,面板温度和天气条件,从而能够表征光伏组件。第一步,从室外数据获得标准测试条件下的光伏模块的标称最大功率。然后,通过应用奥斯特瓦尔德(Osterwald)方法和恒定填充因子方法比较模型化的和实验的最大功率,对不同的光伏技术在当地气候条件下的性能进行了分析。

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