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A combined theoretical and experimental performance analysis of a grid-tied photovoltaic system in semi-arid climate : a case study in Ghardaia, Algeria

机译:半干旱气候围网光伏系统的综合理论与实验性能分析 - 以阿尔及利亚镰状物为例

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Both theoretical study, experimental validation, and outdoor performance assessment of a single grid-connected photovoltaic plant installed on the roof of the car parking located in Renewable Energy Applied Research Unit (URAER), Ghardaia, southern of Algeria have been carried out in this paper. The plant is made up of 16 micro-amorphous modules of 125 Wp and one SMA sunny boy inverter of 3 kW. The results presented were based on experimental data recorded after about three and a half years; from May 18, 2015 to December 31, 2018. The first part of this work, modeling, and validation by the experimental data of photovoltaic array (DC side) based on the Linear Reoriented Coordinates Method (LRCM) and grid-connected inverter (AC side) based on the model developed at Sandia National Laboratories. The results show a good agreement between measured and calculated data (current, voltage, power, and efficiency). The second part of the work is to investigate the operational performance and efficiency of the PV plant from the measured daily power generation and weather as recommended in the International Electro Technical Commission IEC 61724. The performance-computed parameters are based on monthly average daily values, including DC and AC energy generated, reference yield array yield final yield temperature losses PV, inverter and system efficiency, capacity factor performance ratio, and others as defined in IEC. The total output energy PV installation generated during the measured period was of 12944, 44 kWh and the total energy output delivered into URAER internal grid was 12292, 16 kWh. Furthermore, the average daily array yield, final yield, and reference yield varied from a minimum to a maximum value of 2.62 kWh/kWp-6.41 kWh/kWp, 2.51kWh/kWp-6.29kWh/kWp, and 2.39kWh/kWp-6.06kWh/kWp, respectively. In addition, the average daily PV module efficiency, system efficiency, and inverter efficiency varied from a minimum to a maximum value of 8.21-9.00%, 7.56-8.35%, and 94-95%, respectively. The array capture losses, system losses, capacity factor, and performance ratio varied from a minimum to a maximum value of 0.053 kWh/kWp-0.42 kWh/kWp, 0.1206 kWh/kWp-0.31kWh/kWp, 10.30%-26.10%, 79.13%-82.52%, respectively. These results highlight the relatively good performance of PV plants installed in the southern region of Algeria.
机译:在本文中,在阿尔及利亚南部的可再生能源应用研究单位(URAER)屋顶上安装了一个网格连接的光伏厂的理论研究,实验验证和户外性能评估。 。该植物由16个Micropholy模块125 WP和3 kW的逆变器组成。提出的结果是基于在大约三年半后记录的实验数据;从2015年5月18日至2018年12月31日。本工作的第一部分,基于线性重新定向坐标法(LRCM)和网格连接的逆变器的光伏阵列(DC侧)的实验数据,建模和验证。(AC侧面)基于桑迪亚国家实验室开发的模型。结果显示测量和计算的数据(电流,电压,功率和效率)之间的良好一致性。该工作的第二部分是调查PV工厂的运营性能和效率从IEC 61724推荐的日常发电和天气。性能计算的参数基于月平均每日价值,包括DC和AC能量产生,参考产量阵列产生最终产量温度损失光伏,逆变器和系统效率,容量因子性能比和IEC中所定义的其他。在测量期间产生的总输出能量PV安装为12944,44千瓦时,并送入尿布器内网的总能量输出为12292,16千瓦时。此外,平均每日阵列产量,最终产量和参考产率从最小值变化到2.62千瓦时/ kWp-6.41 kWh / kWp,2.51kwh / kWp-6.29kwh / kwp和2.39kwh / kwp-6.06 KWH / KWP分别。此外,平均每日PV模块效率,系统效率和逆变器效率从最小值的最小值不同,分别为8.21-9.00%,7.56-8.35%和94-95%。阵列捕获损耗,系统损耗,容量因子和性能比率从最小值变化到0.053千瓦/ kWp-0.42 kWh / kWp,0.1206 kWh / kWp-0.31kwh / kWp,10.30%-26.10%,79.13 %-82.52%分别。这些结果突出了安装在阿尔及利亚南部地区的光伏工厂的相对良好的性能。

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