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Systematic photovoltaic system power losses calculation and modeling using computational intelligence techniques

机译:系统光伏系统功率损耗使用计算智能技术计算和建模

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摘要

The performance of a photovoltaic (PV) system is highly affected by different types of power losses which are incurred by electrical equipment or altering weather conditions. In this context, an accurate analysis of power losses for a PV system is of significant importance. Hence, the systematic calculation of the PV system power losses based on recorded data of the main electrical and meteorological parameters is investigated in this paper. The proposed approach for power losses calculation investigates both array capture losses (e.g. losses resulted from cell temperature, soiling, low irradiance, snow cover, mismatching, and module quality degradation) and system losses (e.g. losses resulted from cabling, inverter, etc.). Moreover, according to the best of our knowledge, the paper proposes for the first time in the literature the modeling of all types of losses based on computational intelligence techniques. The proposed models can predict the future daily values for each type of loss solely based on the main meteorological parameters. The proposed losses calculation approach is applied to 8 years of recorded data for a 1.44 kWp rooftop PV system located in Denver, CO. Several prediction models are built based on the calculated values of the losses. The models are not only validated on the PV system itself, but also on another PV system with different electrical characteristics in Las Vegas, NV. As the results show, the loss prediction models developed in this paper perform accurately for the main PV system and are also applicable to other PV systems.
机译:光伏(PV)系统的性能受到不同类型的功率损耗的影响,这些功率损耗由电气设备或改变天气条件发生。在这种情况下,对PV系统的功率损耗进行了准确的分析具有重要意义。因此,本文研究了基于主电气和气象参数的记录数据的PV系统功率损耗的系统计算。所提出的功率损耗计算方法研究了阵列捕获损失(例如,由细胞温度,污染,低辐照度,雪覆盖,不匹配和模块质量降解而导致的损耗)和系统损耗(例如,由于电缆,逆变器等导致的损耗) 。此外,根据我们所知,本文在文献中首次提出了基于计算智能技术的所有类型损失的建模。所提出的模型可以仅基于主要气象参数来预测每种类型损耗的未来日常值。拟议的损失计算方法适用于位于丹佛的1.44 kWp屋顶光伏系统的8年记录数据。基于损耗的计算值构建了几种预测模型。该模型不仅在光伏系统本身上验证,而且还验证了Las Vegas,NV中具有不同电气特性的另一个光伏系统。作为结果表明,本文开发的损耗预测模型为主PV系统准确执行,也适用于其他光伏系统。

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