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GenPro4 Optical Model for Solar Cell Simulation and Its Application to Multijunction Solar Cells

Authors :
Santbergen, R. (author)
Meguro, Tomomi (author)
Suezaki, Takashi (author)
Koizumi, Gensuke (author)
Yamamoto, Kenji (author)
Zeman, M. (author)
Santbergen, R. (author)
Meguro, Tomomi (author)
Suezaki, Takashi (author)
Koizumi, Gensuke (author)
Yamamoto, Kenji (author)
Zeman, M. (author)
Publication Year :
2017

Abstract

We present a new version of our optical model for solar cell simulation: GenPro4. Its working principles are briefly explained. The model is suitable for quickly and accurately simulating a wide range of wafer-based and thin-film solar cells. Especially adjusting layer thicknesses to match the currents in multijunction devices can be done with a minimum of computational cost. To illustrate this, a triple junction thin-film silicon solar cell is simulated. The simulation results show very good agreement with external quantum efficiency measurements. The application of an MgF2 antireflective coating or an antireflective foil with pyramid texture is considered. Their effects on the implied photocurrents of top, middle, and bottom cells are investigated in detail.<br />Accepted author manuscript<br />Photovoltaic Materials and Devices<br />Electrical Sustainable Energy

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1035492555
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1109.JPHOTOV.2017.2669640