A geostatistical approach for identifying the shadowing conditions affecting a PV plant

P. L. Carotenuto, A. Di Piazza, M. C. Di Piazza, M. Luna, G. Petrone, G. Spagnuolo
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Abstract

Geostatistical approaches are commonly used in many disciplines, but they can be also useful also in identifying the operating conditions of a photovoltaic field, especially when solar irradiance hits differently its modules or when partial shading occurs. Despite some applications has been presented in literature, different aspects related to the accuracy of the operating condition identification process have been not yet analyzed into detail. This paper is aimed at discussing the dependence of the process with respect to the parameters of the geostatistical method. Moreover, a method for the prediction of the shadow motion is proposed and verified in simulation. The interest of this work relies in opening the on-line application of the proposed methods, e.g. in the dynamic photovoltaic systems reconfiguration.
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用于确定影响光伏电站的阴影条件的地质统计学方法
地质统计方法通常用于许多学科,但它们在确定光伏场的操作条件方面也很有用,特别是当太阳辐照度以不同的方式照射其模块或发生部分遮阳时。尽管文献中提出了一些应用,但尚未详细分析与操作状态识别过程准确性相关的不同方面。本文的目的是讨论该过程相对于地质统计方法参数的依赖性。此外,提出了一种预测阴影运动的方法,并在仿真中进行了验证。这项工作的兴趣在于开放所提出的方法的在线应用,例如在动态光伏系统重构中。
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