DocumentCode
3001534
Title
Effects of concentrator chromatic aberration on multi-junction cells
Author
James, Lawrence W.
Author_Institution
James Associates, Boulder, CO, USA
Volume
2
fYear
1994
fDate
5-9 Dec 1994
Firstpage
1799
Abstract
Most practical photovoltaic concentrator optics have considerable chromatic aberration. Thus in a two-junction monolithic cell, the pattern of current generation in the high-bandgap junction is different from that in the low-bandgap junction, resulting in an attempted current flow parallel to the junction in the tunnel junction and adjacent layers. Sheet resistivity of these layers is too high to support this lateral current flow, so at each point on the cell, the current is limited to the current generated in the lowest-current junction. This results in a substantial loss in cell output unless the chromatic aberration of the optics is somehow compensated for. Using a software model, the authors have examined the losses caused by chromatic aberration, and have designed two types of concentrator optics which meet the spectral uniformity needs of multijunction solar cells. One is for space applications where weight is an overriding concern. The other is for terrestrial use where cost and a low sensitivity to construction and operating tolerances are paramount
Keywords
aberrations; energy gap; lenses; optical design techniques; p-n heterojunctions; solar cells; solar energy concentrators; adjacent layers; applications; concentrator chromatic aberration; current generation pattern; design; high-bandgap junction; lateral current flow; low-bandgap junction; multijunction solar cells; photovoltaic concentrator optics; sheet resistivity; software model; spectral uniformity; tunnel junction; two-junction monolithic cell; Lenses; Nonlinear optics; Optical design; Optical refraction; Optical sensors; Optical variables control; Photonic band gap; Photovoltaic systems; Solar power generation; Sun;
fLanguage
English
Publisher
ieee
Conference_Titel
Photovoltaic Energy Conversion, 1994., Conference Record of the Twenty Fourth. IEEE Photovoltaic Specialists Conference - 1994, 1994 IEEE First World Conference on
Conference_Location
Waikoloa, HI
Print_ISBN
0-7803-1460-3
Type
conf
DOI
10.1109/WCPEC.1994.520652
Filename
520652
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