• DocumentCode
    3607503
  • Title

    Generalized Optoelectronic Model of Series-Connected Multijunction Solar Cells

  • Author

    Geisz, John F. ; Steiner, Myles A. ; Garcia, Ivan ; France, Ryan M. ; McMahon, William E. ; Osterwald, Carl R. ; Friedman, Daniel J.

  • Author_Institution
    Nat. Renewable Energy Lab., Golden, CO, USA
  • Volume
    5
  • Issue
    6
  • fYear
    2015
  • Firstpage
    1827
  • Lastpage
    1839
  • Abstract
    The emission of light from each junction in a series-connected multijunction solar cell both complicates and elucidates the understanding of its performance under arbitrary conditions. Bringing together many recent advances in this understanding, we present a general 1-D model to describe luminescent coupling that arises from both voltage-driven electroluminescence and voltage-independent photoluminescence in nonideal junctions that include effects such as Sah-Noyce-Shockley (SNS) recombination with n ≠ 2, Auger recombination, shunt resistance, reverse-bias breakdown, series resistance, and significant dark area losses. The individual junction voltages and currents are experimentally determined from measured optical and electrical inputs and outputs of the device within the context of the model to fit parameters that describe the devices performance under arbitrary input conditions. Techniques to experimentally fit the model are demonstrated for a four-junction inverted metamorphic solar cell, and the predictions of the model are compared with concentrator flash measurements.
  • Keywords
    electroluminescent devices; photoluminescence; solar cells; Auger recombination; SNS recombination; Sah-Noyce-Shockley recombination; arbitrary input conditions; concentrator flash measurements; dark area losses; four-junction inverted metamorphic solar cell; generalized optoelectronic model; luminescent coupling; reverse-bias breakdown; series resistance; series-connected multijunction solar cells; shunt resistance; voltage-driven electroluminescence; voltage-independent photoluminescence; Electroluminescence; Junctions; Photoconductivity; Photoluminescence; Photovoltaic cells; Resistance; Electroluminescence (EL); luminescent coupling (LC); multijunction solar cells; photoluminescence (PL);
  • fLanguage
    English
  • Journal_Title
    Photovoltaics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    2156-3381
  • Type

    jour

  • DOI
    10.1109/JPHOTOV.2015.2478072
  • Filename
    7287740