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OPTIMIZATION OF THE SOLAR CELL STRUCTURE FOR THE INDUSTRIAL IMPLEMENTATION IN VERY LARGE AREA a-Si:H PV MODULES

机译:在非常大面积A-Si中工业实施的太阳能电池结构优化:H光伏模块

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This paper reports on work performed in the FP7 European project HELATHIS. It presents the development of a TCO-glass combining a low iron-content substrate with a SnO_2-layer with enhanced carrier mobility and therefore higher optical transmission, achieving in average 7.4% single junction module efficiency in TSolar standard production. First results of the further optimization of the fabrication process with this TCO glass indicate an increase of the single junction module efficiency in the future to nearly 8% in the stabilized state. Lightsoaking experiments of modules present very similar stabilized efficiency in the investigated i-layer thickness range between 140 to 260 nm, therefore, decreasing the i-layer thickness permits to increase the factory production capacity from about 55 up to about 75 MW/year. Investigation of the deposition of Al-doped ZnO layers by rf-sputtering from rotatable targets for the back reflector indicates improvement in the I_(sc) and V_(oc). Implementation of such targets allows to expand the target life time and to reduce the maintenance time in comparison to standard planar targets. Ga-doped ZnO layers, when implemented in the back reflector, present similar cell performance compared with Al-doped ZnO.
机译:本文报告了FP7欧洲项目Helathis的工作。它呈现了具有增强型载流子迁移率的SnO_2层的TCO玻璃与具有增强的载波迁移率的玻璃玻璃,更高的光学传输,平均在TSOLAR标准生产中实现了7.4%的单结模块效率。使用该TCO玻璃的进一步优化制造过程的首先结果表明将来的单个结模块效率增加到稳定状态下的近8%。模块的LightSoAthe实验在调查的I层厚度范围内具有非常相似的稳定效率,因此在140至260nm之间,因此降低了I层厚度允许将工厂生产能力从约55升至约75 mW。通过从后反射器的可旋转靶的RF溅射沉积Al掺杂ZnO层的研究表明I_(SC)和V_(OC)的改善。与标准平面目标相比,这种目标的实施允许扩展目标寿命并降低维护时间。与Al掺杂的ZnO相比,Ga掺杂的ZnO层当在后反射器中实施时,存在类似的电池性能。

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