Non-Uniformities in Thin-Film Solar Cells and Modules

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Thin-film PV technology due to its fast production line, large area panels and low material usage, is one of the most promising low-cost technologies. Due to their granular structure, thin-film solar cells are inherently non-uniform. Fluctuations inevitably occur during the multistep deposition process of large area thin-film solar panels and specific manufacturing procedures. Furthermore, non- uniformities can become more severe, or increase in size during the solar-panel's life cycle. Non- uniformities reduce the overall efficiency of solar cells and modules, and their effects therefore need to be well understood. This manuscript focuses on the analysis of the effect of non-uniformities on small size solar cells and modules with the help of numerical simulations. Even though the 2-D model developed here can analyze the effect of non-uniformities of any nature, only two specific types of microscopic non-uniformities were addressed here: shunts and weak-diodes. One type of macroscopic non-uniformity, partial shading, was also addressed. The circuit model developed here is a network of diodes, current-sources, and transparent-conductive-oxide resistors.

Autorentext

B.S. in physics from the physics department at al-Farabi Kazakh National University 2000 - 2005; M.S. in physics/photovoltaics from the physics department at Colorado State University 2005 2007; Ph.D. in physics/photovoltaics from the physics department at Colorado State University 2007 - 2010.

Weitere Informationen

  • Allgemeine Informationen
    • Sprache Französisch
    • Autor Galymzhan Koishiyev
    • Titel Non-Uniformities in Thin-Film Solar Cells and Modules
    • Veröffentlichung 27.04.2011
    • ISBN 3844331034
    • Format Kartonierter Einband
    • EAN 9783844331035
    • Jahr 2011
    • Größe H220mm x B150mm x T11mm
    • Untertitel Analysis of Impact of Non-Uniformities on Thin-Film Solar Cells and Modules with 2-D Simulations
    • Gewicht 268g
    • Herausgeber LAP LAMBERT Academic Publishing
    • Anzahl Seiten 168
    • GTIN 09783844331035

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