Dupré Olivier, Niesen Bjoern, De Wolf Stefaan, Ballif Christophe
Institute of Microengineering (IMT), Photovoltaics and Thin Film Electronics Laboratory, École Polytechnique Fédérale de Lausanne (EPFL) , Rue de la Maladière 71b, CH-2002 Neuchâtel, Switzerland.
CSEM PV-Center , Jaquet-Droz 1, CH-2002 Neuchâtel, Switzerland.
J Phys Chem Lett. 2018 Jan 18;9(2):446-458. doi: 10.1021/acs.jpclett.7b02277. Epub 2018 Jan 11.
Multijunction cells may offer a cost-effective route to boost the efficiency of industrial photovoltaics. For any technology to be deployed in the field, its performance under actual operating conditions is extremely important. In this perspective, we evaluate the impact of spectrum, light intensity, and module temperature variations on the efficiency of tandem devices with crystalline silicon bottom cells with a particular focus on perovskite top cells. We consider devices with different efficiencies and calculate their energy yields using field data from Denver. We find that annual losses due to differences between operating conditions and standard test conditions are similar for single-junction and four-terminal tandem devices. The additional loss for the two-terminal tandem configuration caused by current mismatch reduces its performance ratio by only 1.7% when an optimal top cell bandgap is used. Additionally, the unusual bandgap temperature dependence of perovskites is shown to have a positive, compensating effect on current mismatch.
多结电池可能为提高工业光伏效率提供一条经济高效的途径。对于任何要在实地部署的技术而言,其在实际运行条件下的性能极其重要。从这个角度出发,我们评估了光谱、光强和组件温度变化对具有晶体硅底部电池(特别关注钙钛矿顶部电池)的串联器件效率的影响。我们考虑了具有不同效率的器件,并使用丹佛的现场数据计算它们的能量产量。我们发现,单结和四端串联器件因运行条件与标准测试条件之间的差异导致的年度损失相似。当使用最佳顶部电池带隙时,由电流失配引起的两端串联配置的额外损失仅使其性能比降低1.7%。此外,钙钛矿不寻常的带隙温度依赖性对电流失配具有积极的补偿作用。