Electrical characterization intercomparison of high‐efficiency c‐Si modules within Asian and European laboratories

Author:

Monokroussos Christos1ORCID,Salis Elena2ORCID,Etienne Damien1,Zhang XiaoYu1,Dittmann Sebastian3ORCID,Friesen Gabi3,Morita Kengo4,Stang Johannes5,Herbrecht Thomas5,Fakhfouri Vahid6ORCID,Rebeaud Nicolas6,Pavanello Diego2ORCID,Müllejans Harald2ORCID

Affiliation:

1. TÜV Rheinland (Shanghai) Co., Ltd. No.177, Lane 777, West Guangzhong 200072 Shanghai China

2. European Commission, Joint Research Centre Ispra Italy

3. Scuola Universitaria Professionale della Svizzera Italiana (SUPSI‐ISAAC) Canobbio CH‐6952 Switzerland

4. TÜV Rheinland Japan Ltd. 4‐5‐24 Chigasaki‐higashi, Tsuzuki‐ku 224‐0033 Yokohama Japan

5. TÜV Rheinland Energy GmbH Am Grauen Stein 51105 Cologne Germany

6. PASAN SA (Meyer Burger Group) Jaquet‐Droz 8 Neuchatel CH‐2000 Switzerland

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

Reference44 articles.

1. OssenbrinkHA ZaaimanW.BishopJ.Do multi‐flash solar simulators measure the wrong fill factor?.1993;1194–1196.

2. Capacitance effects in high-efficiency cells

3. MetzdorfJ MeierA WinterS WittchenT.Analysis and correction of errors in current‐voltage characteristics of solar cells due to transient measurements. 12thEUPVSEC1994;496–499

4. HishikawaY.Precise performance measurement of high‐efficiency crystalline silicon solar cells. 4thIEEE World Conference on Photovoltaic Energy Conversion2006;1279–1282

5. MonokroussosC GottschalgR TiwariAN FriesenG ChianeseD MauS.The effects of solar cell capacitance on calibration accuracy when using a flash simulator. 4thIEEE World Conference on Photovoltaic Energy Conversion (2006); Vol22006;2231–2234

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