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A new electrical model for the analysis of a partially shaded dye-sensitized solar cells module

机译:用于分析部分阴影的染料敏化太阳能电池模块的新电子模型

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摘要

Partial shading is a commonly encountered mismatch problem in a photovoltaic system. In the drawing near perspective of their massive building integration, dye solar cell (DSC) modules may realistically receive different levels of irradiance, a situation similar to partial shading. In these conditions, the electrical characteristics of the DSC module significantly change. Here a general model for the description and the analysis of dye solar generators is proposed. A new equivalent circuit for DSCs has been developed that is characterized by the introduction of a second diode, capable to conveniently take into account the behavior of the reverse-biased cell/s. An experimental demonstration of the proposed two-diode model's validity is provided. A detailed description, based on numerical analysis, of the influence of partial shading on the photovoltaic performances of a DSC module made by four W-connected cells is given. We here demonstrate that the implementation of a two-diode model allows an excellent matching between the experimentally measured I-V characteristics of the partially shaded module and the simulated ones.
机译:在光电系统中,部分阴影是常见的不匹配问题。在其大规模建筑集成的近景中,染料太阳能电池(DSC)模块可能实际上接收到不同程度的辐照度,这种情况类似于部分阴影。在这些条件下,DSC模块的电气特性会发生明显变化。这里提出了一个用于描述和分析染料太阳能发电机的通用模型。已经开发出一种新的DSC等效电路,其特征是引入了第二个二极管,能够方便地考虑到一个或多个反向偏置单元的行为。实验证明了所提出的两二极管模型的有效性。基于数值分析,给出了部分阴影对由四个W型连接电池制成的DSC模块的光伏性能的影响的详细描述。我们在此证明,通过使用二二极管模型,可以在部分阴影模块的实验测量I-V特性与模拟特性之间实现出色的匹配。

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