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  4. 3-D Modeling of Multicrystalline Silicon Materials and Solar Cells
 
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2019
Journal Article
Title

3-D Modeling of Multicrystalline Silicon Materials and Solar Cells

Abstract
We present a method to model large-area multicrystalline materials using Quokka3, based on artificially generated lifetime images created by combining injection-dependent intragrain lifetimes and defect recombination velocity maps extracted from photoluminescence-based lifetime images. It is found that simulations based only on measured lifetime images underestimate the detrimental impacts of crystal defects and, hence, overestimate the overall cell performance of multicrystalline silicon solar cells. As demonstration, we applied Quokka3 simulations to resolve various bulk recombination losses in industrial multicrystalline silicon solar cells, quantify the effects of phosphorus diffusion and hydrogenation on the final cell performance, and evaluate the detrimental impact of crystal defects on individual cell parameters. Through numerical simulations, this paper has also demonstrated the potential errors of using a single average value to predict the cell performance of inhomogeneous multicrystalline silicon materials. It is observed that the commonly used harmonic mean can provide a good indication for V oc , but is less effective for predicting J sc , and is almost entirely ineffective for predicting the fill factor.
Author(s)
Sio, Hang Cheong
The Australian National University
Fell, Andreas  
Fraunhofer-Institut für Solare Energiesysteme ISE  
Phang, Sieu Pheng
The Australian National University
Wang, Haitao
Jinko Solar
Zheng, Peiting
Jinko Solar
Chen, D.K.
Jinko Solar
Zhang, Xinyu
Jinko Solar
Zhang, Tao
Jinko Solar
Jin, Hao
Jinko Solar
Macdonald, Daniel
The Australian National University
Journal
IEEE Journal of Photovoltaics  
Project(s)
CCPV
Funder
Bundesministerium für Bildung und Forschung BMBF (Deutschland)  
Open Access
File(s)
Download (4.19 MB)
Rights
Use according to copyright law
DOI
10.24406/publica-r-258675
10.1109/JPHOTOV.2019.2914874
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
Keyword(s)
  • grain boundary

  • semiconductor impurities

  • photoluminescence

  • semiconductor device modeling

  • silicon

  • Photovoltaik

  • Silicium-Photovoltaik

  • Herstellung und Analyse von hocheffizienten Solarzellen

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