Zugriffsnummer 54848
Dokumenttyp Konferenzartikel
Sprache Englisch
Titel Incidence Angle Effect: Results of an Interlaboratory Comparison of Measurements on Commercial-Size Modules
Autor(in); Institution
Pravettoni, Mauro
Saw, Min Hsian
Bardizza, Giorgio; TÜV Rheinland Italy, Milan, ITALY
Bellenda, Giovanni
Couderc, Romain
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, Cologne, GERMANY
Leow, Shin Woei
Riechelmann, Stefan; 4.5, Angewandte Radiometrie, PTB-Braunschweig
Valoti, Flavio
van der Heide, Arvid
Weinrich, Frank; 4.5, Angewandte Radiometrie, PTB-Braunschweig
Winter, Stefan; 4.5, Angewandte Radiometrie, PTB-Braunschweig
Quelle/Jahr Proceedings: EU PVSEC 2024:(2024), 020272-001 - 020272-004
ISBN 3-936338-90-6
DOI
URL
Konferenzangaben European Photovoltaic Solar Energy Conference & Exhibition ; EU PVSEC 2024, Vienna, 23-27, September, 2024, Austria
Freie Schlagworte Antiglare Treatment ; Energy Rating ; Experimental Methods ; Incidence Angle Modifier ; Relative Angular Transmittance
Zusammenfassung The incident 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 raising interest in innovative vertically integrated PV applications (e.g. in urban structures, in agrivoltaics, and in vehicles). The international standard IEC 61853-2 presents both an outdoor and an indoor measurement method: 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 recent years, new solutions have been proposed to overcome these limitations and allow a wider adoption of this standard, but method validations and interlaboratory comparisons have been conducted so far only at small-area samples and a real validation on commercial-size modules is still to be performed: in this work we aim at fulfilling this goal, 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. Result shows 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., van der Heide, A., Weinrich, F., & Winter, S. (2024). Incidence Angle Effect: Results of an Interlaboratory Comparison of Measurements on Commercial-Size Modules. European Photovoltaic Solar Energy Conference & Exhibition ; EU PVSEC 2024, Vienna, 23-27, September, 2024, Austria. https://doi.org/10.4229/EUPVSEC2024/3DO.17.2

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