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Topology optimization of front metallization patterns for solar cells

机译:太阳能电池正面金属化图案的拓扑优化

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This paper presents the application of topology optimization (TO) for designing the front electrode patterns for solar cells. Improving the front electrode design is one of the approaches to improve the performance of the solar cells. It serves to produce the voltage distribution for the front surface such that the current flow through the solar cell is maximized. In this paper, we use TO to design the front electrode pattern for side-contact and pin-up modules. Specific challenges include the nonlinearity of the physical problem and the design-dependent photocurrent loading. The greater design freedom of TO versus traditional shape optimization generates novel, efficient electrode patterns. In addition, we study the effect of mesh resolution and solar cell size on the final design. The results suggest that TO can probably be an effective method to generate designs which could lead to improved performance of the solar cells.
机译:本文介绍了拓扑优化(TO)在设计太阳能电池前电极图案中的应用。改善前电极设计是改善太阳能电池性能的方法之一。它用于产生用于前表面的电压分布,从而使流过太阳能电池的电流最大化。在本文中,我们使用TO来设计侧面接触和引脚固定模块的前电极图案。具体挑战包括物理问题的非线性和与设计有关的光电流负载。与传统形状优化相比,TO的更大设计自由度产生了新颖,高效的电极图案。此外,我们研究了网格分辨率和太阳能电池尺寸对最终设计的影响。结果表明,TO可能是生成设计的有效方法,可以提高太阳能电池的性能。

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