| Zugriffsnummer | 53018 |
| Dokumenttyp | Zeitschriftenartikel |
| Peer Review | mit Peer Review |
| Sprache | Englisch |
| Titel | Incidence Angle Effect: Validation of New Measurement Methods for IEC 61853-2 |
| Autor(in); Institution |
Pravettoni, Mauro; Renewable and Sustainable Energy Research Center, Technology Innovation Institute (TII), Abu Dhabi, UAE
Saw, Min Hsian; Renewable and Sustainable Energy Research Center, Technology Innovation Institute (TII), Abu Dhabi, UAE; Solar Energy Research Institute of Singapore (SERIS), National University of Singapore, Singapore, SINGAPORE
Bardizza, Giorgio; TÜV-Rheinland Solar, TÜV-Rheinland Group, Cologne, GERMANY
Bellenda, Giovanni; Istituto di Sostenibilità Ambientale Applicata all'Ambiente Costruito (ISAAC), Scuola Universitaria Professionale della Svizzera Italiana (SUPSI), Mendrisio, SWITZERLAND
Couderc, Romain; Institut National de l'Energie Solaire (INES), CEA, Le Bourget-du-Lac, FRANCE
Friesen, Gabi; Istituto di Sostenibilità Ambientale Applicata all'Ambiente Costruito (ISAAC), Scuola Universitaria Professionale della Svizzera Italiana (SUPSI), Mendrisio, SWITZERLAND
Herrmann, Werner; TÜV-Rheinland Solar, TÜV-Rheinland Group, Cologne, GERMANY
Leow, Shin Woei; Solar Energy Research Institute of Singapore (SERIS), National University of Singapore, Singapore, SINGAPORE
Valoti, Flavio; Istituto di Sostenibilità Ambientale Applicata all'Ambiente Costruito (ISAAC), Scuola Universitaria Professionale della Svizzera Italiana (SUPSI), Mendrisio, SWITZERLAND
Weinrich, Frank; 4.5, Angewandte Radiometrie, PTB-Braunschweig
|
| Quelle/Jahr | Progress in Photovoltaics: 33 (2025), 12, 1311 - 1321 |
| ISSN | 1062-7995 (print) ; 1099-159X (online) |
| DOI | |
| Verlag | Chichester: Wiley |
| Freie Schlagworte | antiglare treatment ; energy rating ; experimental methods ; incidence angle modifier ; relative angular transmittance |
| Zusammenfassung | The incidence angle effect causes a decrease in the photogenerated current of PV modules when they are subject to incident irradiance at wide angles: Its relevance should be quantified for accurate energy yield purposes and has recently gained significance due to the rising interest in novel integrated PV applications, where vertical or nonoptimal tilt are favored (e.g., in urban structures, in agrivoltaics, and vehicles). The international standard IEC 61853-2 presents both outdoor and indoor measurement methods: However, the indoor measurement method for commercial-size modules is often impractical due to irradiance uniformity limitations on the volume spanned by the tested module upon rotation in most of the solar simulators available on the market. In recent years, new solutions have been proposed to overcome these limitations and allow wider adoption of this standard: However, method validations and interlaboratory comparisons have been conducted so far only on small-area samples, and a real validation on commercial-size modules is still missing. In this work, we aim at filling this gap, reporting the results of an interlaboratory comparison conducted within the international project team that is currently working at the new edition of IEC 61853-2. The results show a remarkable agreement between different measurement methods, thus validating more options for the evaluation of this important effect. |
Zitierung
Pravettoni, M., Saw, M. H., Bardizza, G., Bellenda, G., Couderc, R., Friesen, G., Herrmann, W., Leow, S. W., Riechelmann, S., Valoti, F., Heide, A. V. D., Weinrich, F., & Winter, S. (2025). Incidence Angle Effect: Validation of New Measurement Methods for IEC 61853-2. Progress in Photovoltaics, 33(12), 1311–1321. https://doi.org/10.1002/pip.3850