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Optimized Configuration of Mismatched Photovoltaic Arrays

机译:不匹配的光伏阵列的优化配置

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When the panels in a photovoltaic (PV) array are subjected to a nonuniform irradiance level, some bypass diodes may turn on, and the overall power production might be affected significantly. An increase of the power delivered by the whole array might be obtained by means of its electrical reconfiguration, that is, the change of the series-parallel connection among the panels of which it is made up. The computation of the electrical connection among the panels that ensures the maximum delivered power is a combinatorial problem requiring powerful optimization methods. This paper is devoted to the formulation of an optimization procedure for determining the best electrical configuration among the panels. The proposed algorithm requires simple mathematical calculations, and it uses a vectorized structure; thus, it is suitable to be implemented in any embedded system for the purpose of a real-time PV array reconfiguration. The algorithm is first explained by using a pilot example, and afterward, its performance is shown by applying it to a real domestic PV field. The results show that the optimization algorithm computes an optimized configuration with a low computational burden.
机译:当光伏(PV)阵列中的面板受到不均匀的辐照度时,某些旁路二极管可能会导通,并且整体发电量可能会受到严重影响。整个阵列传递的功率的增加可以通过其电气重新配置来实现,即,组成阵列的面板之间的串联-并联连接的改变。确保最大输出功率的面板间电连接的计算是一个组合问题,需要强大的优化方法。本文致力于确定面板中最佳电气配置的优化程序的制定。所提出的算法需要简单的数学计算,并且使用矢量化结构。因此,出于实时PV阵列重新配置的目的,适合在任何嵌入式系统中实现。首先通过一个试验示例来说明该算法,然后将其应用于实际的家用光伏领域来展示其性能。结果表明,该优化算法计算出的优化配置具有较低的计算负担。

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