This paper presents the design and preliminary experimental results of a concentrator-type photovoltaic module based on a free-form off-axis 800×XR-Köhler concentrator. The off-axis XR-Köhler concentrator is one of the advanced concentrators that perform high concentration with a large acceptance angle and excellent irradiance uniformity on a solar cell. As a result of on-sun characterization of the unglazed single-cell unit test rig, the temperature-corrected DC module efficiency was 32.2% at 25 °C without an anti-reflective (AR) coating on the secondary optics, and the acceptance angle was more than ±1.0°. In addition, the non-corrected DC efficiency of an individual cell in a glazed 8-cell unit module mounted on a carousel tracking system was measured. The individual efficiency deviated in the range of 24.3-27.4%, owing to the mirror shape and alignment errors. The resultant series-connected efficiency was approximately 25% at direct normal irradiation (DNI) of 770 W/m2.
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27 September 2013
9TH INTERNATIONAL CONFERENCE ON CONCENTRATOR PHOTOVOLTAIC SYSTEMS: CPV-9
15–17 April 2013
Miyazaki, Japan
Research Article|
September 27 2013
Field experiment of 800× off-axis XR-Köhler concentrator module on a carousel tracker Free
Noboru Yamada;
Noboru Yamada
Nagaoka University of Technology, Nagaoka,
Japan
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Kazuya Okamoto;
Kazuya Okamoto
Nagaoka University of Technology, Nagaoka,
Japan
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Toshikazu Ijiro;
Toshikazu Ijiro
Nagaoka University of Technology, Nagaoka,
Japan
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Takao Suzuki;
Takao Suzuki
Mitsui Engineering & Shipbuilding Co., Ltd., Tokyo,
Japan
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Toshihiko Maemura;
Toshihiko Maemura
Mitsui Engineering & Shipbuilding Co., Ltd., Tokyo,
Japan
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Takashi Kawaguchi;
Takashi Kawaguchi
Mitsui Engineering & Shipbuilding Co., Ltd., Tokyo,
Japan
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Hiroshi Takahashi;
Hiroshi Takahashi
Okamoto Glass Co., Ltd., Kashiwa,
Japan
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Takashi Sato;
Takashi Sato
Stanley Electric Co., Ltd., Tokyo,
Japan
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Maikel Hernandez;
Maikel Hernandez
LPI Europe., Madrid,
Spain
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Pablo Benitez;
Pablo Benitez
LPI Europe., Madrid, Spain and Universidad Politécnica de Madrid., Madrid,
Spain
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Aleksandra Cvetkovic;
Aleksandra Cvetkovic
LPI Europe., Madrid,
Spain
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Joao Mendes-Lopes;
Joao Mendes-Lopes
Universidad Politécnica de Madrid., Madrid,
Spain
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Juan Carlos Miñano
Juan Carlos Miñano
LPI Europe., Madrid, Spain and Universidad Politécnica de Madrid., Madrid,
Spain
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Noboru Yamada
Nagaoka University of Technology, Nagaoka,
Japan
Kazuya Okamoto
Nagaoka University of Technology, Nagaoka,
Japan
Toshikazu Ijiro
Nagaoka University of Technology, Nagaoka,
Japan
Takao Suzuki
Mitsui Engineering & Shipbuilding Co., Ltd., Tokyo,
Japan
Toshihiko Maemura
Mitsui Engineering & Shipbuilding Co., Ltd., Tokyo,
Japan
Takashi Kawaguchi
Mitsui Engineering & Shipbuilding Co., Ltd., Tokyo,
Japan
Hiroshi Takahashi
Okamoto Glass Co., Ltd., Kashiwa,
Japan
Takashi Sato
Stanley Electric Co., Ltd., Tokyo,
Japan
Maikel Hernandez
LPI Europe., Madrid,
Spain
Pablo Benitez
LPI Europe., Madrid, Spain and Universidad Politécnica de Madrid., Madrid,
Spain
Julio Chaves
LPI Europe., Madrid,
Spain
Aleksandra Cvetkovic
LPI Europe., Madrid,
Spain
Juan Vilaplana
LPI Europe., Madrid,
Spain
Ruben Mohedano
LPI Europe., Madrid,
Spain
Joao Mendes-Lopes
Universidad Politécnica de Madrid., Madrid,
Spain
Juan Carlos Miñano
LPI Europe., Madrid, Spain and Universidad Politécnica de Madrid., Madrid,
Spain
AIP Conf. Proc. 1556, 194–196 (2013)
Citation
Noboru Yamada, Kazuya Okamoto, Toshikazu Ijiro, Takao Suzuki, Toshihiko Maemura, Takashi Kawaguchi, Hiroshi Takahashi, Takashi Sato, Maikel Hernandez, Pablo Benitez, Julio Chaves, Aleksandra Cvetkovic, Juan Vilaplana, Ruben Mohedano, Joao Mendes-Lopes, Juan Carlos Miñano; Field experiment of 800× off-axis XR-Köhler concentrator module on a carousel tracker. AIP Conf. Proc. 27 September 2013; 1556 (1): 194–196. https://doi.org/10.1063/1.4822229
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