Evaluation of InGaP/InGaAs/Ge triple-junction solar cell and optimization of solar cell's structure focusing on series resistance for high-efficiency concentrator photovoltaic systems

The series resistance of an InGaP/InGaAs/Ge triple-junction solar cell was evaluated in detail. Series resistance components such as electrode resistance, tunnel junction resistance and lateral resistance between electrodes were estimated separately. The characteristics of the triple-junction solar...

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Veröffentlicht in:Solar energy materials and solar cells 2006-05, Vol.90 (9), p.1308-1321
Hauptverfasser: Nishioka, Kensuke, Takamoto, Tatsuya, Agui, Takaaki, Kaneiwa, Minoru, Uraoka, Yukiharu, Fuyuki, Takashi
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container_end_page 1321
container_issue 9
container_start_page 1308
container_title Solar energy materials and solar cells
container_volume 90
creator Nishioka, Kensuke
Takamoto, Tatsuya
Agui, Takaaki
Kaneiwa, Minoru
Uraoka, Yukiharu
Fuyuki, Takashi
description The series resistance of an InGaP/InGaAs/Ge triple-junction solar cell was evaluated in detail. Series resistance components such as electrode resistance, tunnel junction resistance and lateral resistance between electrodes were estimated separately. The characteristics of the triple-junction solar cell under concentrated light were evaluated by equivalent circuit calculation with a simulation program with integrated circuit emphasis (SPICE). By equivalent circuit calculation, the optimization of cell designs was performed, focusing on series resistance and cell current in order to realize high-efficiency concentrator cells.
doi_str_mv 10.1016/j.solmat.2005.08.003
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1879-3398
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source ScienceDirect Journals (5 years ago - present)
subjects Applied sciences
Circuit calculation
Concentrated light
Energy
Exact sciences and technology
Natural energy
Photovoltaic conversion
Series resistance
Solar cells. Photoelectrochemical cells
Solar energy
SPICE
Triple-junction solar cell
title Evaluation of InGaP/InGaAs/Ge triple-junction solar cell and optimization of solar cell's structure focusing on series resistance for high-efficiency concentrator photovoltaic systems
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