Optimization of Device Design for Thin-Film Stacked Tandem Solar Modules in Terms of Outdoor Performance
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概要
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The device current-voltage ($I$-$V$) characteristics of thin film silicon stacked tandem solar modules (HYBRID modules) consisting of a hydrogenated amorphous silicon (a-Si:H) cell and a thin-film microcrystalline silicon solar cell ($\mu$c-Si) have been investigated under various spectral irradiance distributions. The spectrometric characterization had revealed that the performance of the HYBRID module exposed to sunlight tended to be limited by the top a-Si:H cell due to the photodegradation of the top cell, and the bottom $\mu$c-Si cell of the modules was stable as before exposure. The HYBRID module limited by the top cell exhibited a more efficient performance than the bottom-limited module in natural sunlight at noon. This behavior is well explained by the contour analysis of the performance as a function of spectral irradiance ratio and module temperature.
- 2004-09-15
著者
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Sawada Toru
Kaneka Corporation
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Ichikawa Mitsuru
Kaneka Corporation
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NAKAJIMA Akihiko
Kaneka Corporation
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YOSHIMI Masashi
Kaneka Corporation
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Sawada Toru
Kaneka Corporation, 2-1-1 Hieitsuji, Otsu, Shiga 520-0104, Japan
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Yamamoto Kenji
KANEKA Belgium N.V., Nijverheidsstraat 16, 2260 Westerlo-Oevel, Belgium
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Yoshimi Masashi
Kaneka Corporation, 2-1-1 Hieitsuji, Otsu, Shiga 520-0104, Japan
関連論文
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- Optimization of Device Design for Thin-Film Stacked Tandem Solar Modules in Terms of Outdoor Performance
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