首页> 外文会议>International Conference on Concentrator Photovoltaic Systems >Reduction of Front-Metallization Grid Shading in Concentrator Cells through Laser Micro-Grooved Cover Glass
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Reduction of Front-Metallization Grid Shading in Concentrator Cells through Laser Micro-Grooved Cover Glass

机译:通过激光微沟盖玻璃减少浓缩器细胞中的前金属化网格遮蔽

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Concentrator solar cell front-grid metallizations are designed so that the trade-off between series resistance and shading factor (SF) is optimized for a particular irradiance. High concentrator photovoltaics (CPV) typically requires a metallic electrode pattern that covers up to 10% of the cell surface. The shading effect produced by this front electrode results in a significant reduction in short-circuit current (I_(SC)) and hence, in a significant efficiency loss. In this work we present a cover glass (originally meant to protect the cell surface) that is laser-grooved with a micrometric pattern that redirects the incident solar light towards interfinger regions and away from the metallic electrodes, where they would be wasted in terms of photovoltaic generation. Quantum efficiency (QE) and current (I)-voltage (V) characterization under concentration validate the proof-of-concept, showing great potential for CPV applications.
机译:集中器太阳能电池前网格金属化设计使得串联电阻和遮阳系数(SF)之间的权衡针对特定的辐照度进行了优化。高浓缩器光伏(CPV)通常需要覆盖高达10%的细胞表面的金属电极图案。由该前电极产生的阴影效果导致短路电流(I_(SC))显着降低,因此在显着的效率损失中。在这项工作中,我们提出了一种覆盖玻璃(最初意味着保护电池表面),其具有带有微米图案的微米图案,所述微米图案将入射的太阳灯重定向到互通区域,远离金属电极,在那里它们将浪费在其中光伏发电。量子效率(QE)和电流(I)浓度表征(v)表征验证了概念验证,显示了CPV应用的巨大潜力。

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