Waved glass: Towards optimal light distribution on solar cell surfaces for high efficient modules

Author:

Bergamin L.,Sammaraee T.

Publisher

Elsevier BV

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

Reference14 articles.

1. Caballero, L., Sanchez-Friera, P., Lalaguna, B., Alonso, J., Vazquez, M., 2006. Series resistance modelling of industrial screen-printed monocrystalline silicon solar cells and modules including the effect of spot soldering. In: Photovoltaic Energy Conversion, Conference Record of the 4th World Conference on, vol. 2. IEEE, p. 1388.

2. De Wolf, S., Choulat, P., Vazsonyi, E., Einhaus, R., Van Kerschaver, E., De Clercq, K., Szlufcik, J., 2000. Towards industrial application of isotropic texturing for multi-crystalline silicon solar cells. In: Proceedings of the 16th European Photovoltaic Solar Energy Conference. Glasgow, UK, pp. 1521–1523.

3. Dheasuna, C., Mathewson, A., Hecking, L., Wrixon, G., 1994. Novel buried contact technology for advanced silicon solar cells. In: Photovoltaic Energy Conversion 1994, Conference Record of the 24th IEEE Photovoltaic Specialists Conference, vol. 2. IEEE, p. 1496.

4. Duerinckx, F., Choulat, P., Beaucarne, G., Young, R., Rose, M., Raby, J., 2004. Improved screen printing process for very thin multicrystalline silicon solar cells. In: 19th European Photovoltaic Solar Energy Conference and Exhibition.

5. Glunz, S., Mette, A., Aleman, M., Richter, P., Filipovic, A., Willeke, G., 2006. New concepts for the front side metallization of silicon solar cells. In: 21st European Photovoltaic Solar Energy Conference and Exhibition, p. 746.

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