| Zugriffsnummer | 47760 |
| Dokumenttyp | Zeitschriftenartikel |
| Peer Review | mit Peer Review |
| Sprache | Englisch |
| Titel | PV module energy rating standard IEC 61853-3 intercomparison and best practice guidelines for implementation and validation |
| Autor(in); Institution |
Vogt, Malte Ruben; Institute for Solar Energy Research Hamelin, Emmerthal, GERMANY; Photovoltaic Materials and Devices, Delft University of Technology, Delft, THE NETHERLANDS
Riechelmann, Stefan; 4.5, Angewandte Radiometrie, PTB-Braunschweig
Gracia-Amillo, Ana Maria; Joint Research Centre, European Commission, Ispra, ITALY
Driesse, Anton; Photovoltaic Performance Labs, Freiburg, GERMANY
Kokka, Alexander; Metrology Research Institute, Aalto University, Espoo, FINLAND
Maham, Kinza; Metrology Research Institute, Aalto University, Espoo, FINLAND
Kärhä, Petri; Metrology Research Institute, Aalto University, Espoo, FINLAND
Kenny, Robert; Joint Research Centre, European Commission, Ispra, ITALY
Schinke, Carsten; Institute for Solar Energy Research Hamelin, Emmerthal, GERMANY; Institute for Solid State Physics, Leibniz University Hannover, Hannover, GERMANY
Bothe, Karsten; Institute for Solar Energy Research Hamelin, Emmerthal, GERMANY
Blakesley, James C.; National Physical Laboratory, Teddington, UK
Music, Esma; PTB-Braunschweig, formerly; Institut za mjeriteljstvo Bosne i Hercegovine, Sarajevo, BOSNIA AND HERZEGOVINA
Plag, Fabian; 3, Chemische Physik und Explosionsschutz, PTB-Braunschweig
Friesen, Gabi; SUPSI-PVLab, University of Applied Sciences and Arts of Southern Switzerland, Mendrisio, SWITZERLAND
Corbellini, Gianluca; SUPSI-PVLab, University of Applied Sciences and Arts of Southern Switzerland, Mendrisio, SWITZERLAND
Riedel-Lyngskær, Nicholas; Department of Photonics Engineering, Technical University of Denmark, Roskilde, DENMARK
Valckenborg, Roland; TNO, Eindhoven, THE NETHERLANDS
Schweiger, Markus; TÜV Rheinland Energy GmbH, Cologne, GERMANY
Herrmann, Werner; TÜV Rheinland Energy GmbH, Cologne, GERMANY
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| Quelle/Jahr | IEEE Journal of Photovoltaics: 12 (2022), 3, 844 - 852 |
| ISSN | 2156-3381 (PRINT) ; 2156-3403 (ONLINE) |
| DOI | |
| URL | |
| Verlag | New York, NY: IEEE |
| Zusammenfassung | The IEC 61853 standard series aims to provide a standardized measure for photovoltaic (PV) module energy rating, namely the Climate Specific Energy Rating(CSER). For this purpose, it defines procedures for the experimental determination of input data and algorithms for calculating the CSER. However, some steps leave room for interpretation regarding the specific implementation. To analyze the impact of these ambiguities, the comparability of results, and the clarity of the algorithm for calculating the CSER in Part 3 of the standard, an intercomparison is performed among research organizations with ten different implementations of the algorithm. We share the same input data, obtained by measurement of a commercial crystalline silicon PV module, among the participating organizations. Each participant then uses their individual implementations of the algorithm to calculate the resulting CSER values. The initial blind comparison reveals differences of 0.133 (14.7%) in CSER. After several comparison phases, a best practice approach is defined, which reduces the difference by a factor of 210 to below 0.001 (0.1%) in CSER for two independent PV modules. The best practice presented in this article establishes clear guidelines for the numerical treatment of the spectral correction and power matrix extrapolation, where the methods in the standard are not clearly defined. Additionally, we provide input data and results for the PV community to test their implementations of the standard's algorithm. To identify the source of the deviations, we introduce a climate data diagnostic set. Based on our experiences, we give recommendations for the future development of the standard. |
| Förderinformationen (1) |
Förderername: European Commission (EC)
Förderer ID: 0000 0001 2242 8989 Förderer ID Typ: ISNI Förderprogramm: EMPIR European Union's Horizon 2020 research and innovation program |
Zitierung
Vogt, M. R., Riechelmann, S., Gracia-Amillo, A. M., Driesse, A., Kokka, A., Maham, K., Kärhä, P., Kenny, R., Schinke, C., Bothe, K., Blakesley, J. C., Music, E., Plag, F., Friesen, G., Corbellini, G., Riedel-Lyngskær, N., Valckenborg, R., Schweiger, M., & Herrmann, W. (2022). PV module energy rating standard IEC 61853-3 intercomparison and best practice guidelines for implementation and validation. IEEE Journal of Photovoltaics, 12(3), 844–852. https://doi.org/10.1109/JPHOTOV.2021.3135258