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Routes to increasing efficiency and reducing the cost of thin-film solar panels

机译:提高效率并降低薄膜太阳能电池板成本的途径

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Most development work in the laboratory is dedicated to efficiency enhancements at the cell level; improvements in efficiency can lead to higher cost-competitiveness of PV. However, the cost of panel manufacturing is an important aspect as well. For CIGS panels the deposition of the active layer is an important part of the cost, and decreasing the layer thickness can reduce costs. Moreover, cost of ownership calculations can determine how much benefit can be expected from thinner absorber layers from a cost perspective; clearly, a thinner absorber will result in reduced absorption. To avoid losses, modelling can be used to predict the efficiency and viable light management strategies. Other efficiency-enhancing technology is related to the fact that most thin-film solar panels are monolithically interconnected. The area loss involved in this type of interconnection, and the trade-off between conductivity and transmittance of the front contact, impose limits on the maximum efficiency. The impact of improving both of these aspects is demonstrated in this paper. A viable way to improve the front contact is by supplementing the front contact with a metallic pattern. The benefit and the impact of different configurations and dimensions of the cell and metallic pattern are presented.
机译:实验室中的大多数开发工作都致力于提高单元级别的效率。效率的提高可以提高PV的成本竞争力。但是,面板的制造成本也是重要的方面。对于CIGS面板,活性层的沉积是成本的重要组成部分,减小层厚度可以降低成本。此外,从成本的角度来看,拥有成本的计算可以确定从较薄的吸收层中可以获得多少收益;显然,更薄的吸收剂将导致吸收降低。为了避免损失,可以使用建模来预测效率和可行的光管理策略。其他提高效率的技术与大多数薄膜太阳能电池板是单片互连的事实有关。这种互连涉及的面积损失以及前触点的电导率和透射率之间的权衡取舍限制了最大效率。本文演示了改善这两个方面的影响。改善前触点的可行方法是在前触点上添加金属图案。介绍了单元和金属图案的不同配置和尺寸的好处和影响。

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