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Statistical analysis of the performance and simulation of a two-axis tracking PV system

机译:两轴跟踪光伏系统性能和仿真的统计分析

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摘要

The energy produced by a photovoltaic system over a given period can be estimated from the incident radiation at the site where the Grid Connected PV System (GCPVS) is located, assuming knowledge of certain basic features of the system under study. Due to the inherently stochastic nature of solar radiation, the question "How much energy will a GCPVS produce at this location over the next few years?" involves an exercise of prediction inevitably subjected to a degree of uncertainty. Moreover, during the life cycle of the GCPVS, another question arises: "Is the system working correctly?". This paper proposes and examines several methods to cope with these questions. The daily performance of a PV system is simulated. This simulation and the interannual variability of both radiation and productivity are statistically analyzed. From the results several regression adjustments are obtained. This analysis is shown to be useful both for productivity prediction and performance checking exercises. Finally, a statistical analysis of the performance of a GCPVS is carried out as a detection method of malfunctioning parts of the system.
机译:假设了解所研究系统的某些基本特征,就可以从并网光伏系统(GCPVS)所在位置的入射辐射估算光伏系统在给定期间内产生的能量。由于太阳辐射的固有随机性,问题“未来几年内,该位置将产生GCPVS多少能量?”涉及不可避免地要进行一定程度不确定性的预测活动。此外,在GCPVS的生命周期中,还会出现另一个问题:“系统是否正常工作?”。本文提出并研究了几种解决这些问题的方法。模拟了光伏系统的日常性能。对这种模拟以及辐射和生产率的年际变化进行统计分析。从结果中获得了几种回归调整。该分析对于生产率预测和绩效检查练习均有用。最后,对GCPVS的性能进行统计分析,作为检测系统故障部件的方法。

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