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Memorias de investigación
Ponencias en congresos:
Analysis of chromatic aberration effects in triple-junction solar cells using advanced distributed models
Año:2011
Áreas de investigación
  • Tecnología electrónica y de las comunicaciones
Datos
Descripción
The consideration of real operating conditions for the design and optimization of a multijunction solar cell receiver? concentrator assembly is indispensable. Such a requirement involves the need for suitable modeling and simulation tools in order to complement the experimental work and circumvent its wellknown burdens and restrictions. Three-dimensional distributed models have been demonstrated in the past to be a powerful choice for the analysis of distributed phenomena in single- and dual-junction solar cells, as well as for the design of strategies to minimize the solar cell losses when operating under high concentrations. In this paper, we present the application of these models for the analysis of triple-junction solar cells under real operating conditions. The impact of different chromatic aberration profiles on the short-circuit current of triple-junction solar cells is analyzed in detail using the developed distributedmodel. Current spreading conditions the impact of a given chromatic aberration profile on the solar cell I?V curve. The focus is put on determining the role of current spreading in the connection between photocurrent profile, subcell voltage and current, and semiconductor layers sheet resistance
Internacional
Si
Nombre congreso
37th IEEE Photovoltaic Specialist Conference
Tipo de participación
960
Lugar del congreso
Seattle, USA
Revisores
Si
ISBN o ISSN
9781424499663
DOI
Fecha inicio congreso
19/06/2011
Fecha fin congreso
24/06/2011
Desde la página
219
Hasta la página
224
Título de las actas
2011 37th IEEE Photovoltaic Specialists Conference (PVSC 2011)
Esta actividad pertenece a memorias de investigación
Participantes
  • Autor: Ivan Garcia Vara (UPM)
  • Autor: Pilar Espinet González (UPM)
  • Autor: Ignacio Rey-Stolle Prado (UPM)
  • Autor: Carlos Algora Del Valle (UPM)
Grupos de investigación, Departamentos, Centros e Institutos de I+D+i relacionados
  • Creador: Departamento: Electrónica Física
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