International collaboration framework for the calculation of performance loss rates: Data quality, benchmarks, and trends (towards a uniform methodology)
Lindig, Sascha; Moser, David; Curran, Alan J.; Rath, Kunal; Khalilnejad, Arash; French, Roger H.; Herz, Magnus; Müller, Björn; Makrides, George; Georghiou, George; Livera, Andreas; Richter, Mauricio; Ascencio-Vásquez, Julián; van Iseghem, Mike; Meftah, Mohammed; Jordan, Dirk; Deline, Chris; van Sark, Wilfried; Stein, Joshua S.; Theristis, Marios; Meyers, Bennet; Baumgartner, Franz; Luo, Wei
(2021) Progress in Photovoltaics: Research and Applications, volume 29, issue 6, pp. 573 - 602
(Article)
Abstract
The IEA PVPS Task 13 group, experts who focus on photovoltaic performance, operation, and reliability from several leading R&D centers, universities, and industrial companies, is developing a framework for the calculation of performance loss rates of a large number of commercial and research photovoltaic (PV) power plants and their related
... read more
weather data coming across various climatic zones. The general steps to calculate the performance loss rate are (i) input data cleaning and grading; (ii) data filtering; (iii) performance metric selection, corrections, and aggregation; and finally, (iv) application of a statistical modeling method to determine the performance loss rate value. In this study, several high-quality power and irradiance datasets have been shared, and the participants of the study were asked to calculate the performance loss rate of each individual system using their preferred methodologies. The data are used for benchmarking activities and to define capabilities and uncertainties of all the various methods. The combination of data filtering, metrics (performance ratio or power based), and statistical modeling methods are benchmarked in terms of (i) their deviation from the average value and (ii) their uncertainty, standard error, and confidence intervals. It was observed that careful data filtering is an essential foundation for reliable performance loss rate calculations. Furthermore, the selection of the calculation steps filter/metric/statistical method is highly dependent on one another, and the steps should not be assessed individually.
show less
Download/Full Text
Keywords: degradation rate, performance loss rate, PV system degradation, PV system performance, Electronic, Optical and Magnetic Materials, Renewable Energy, Sustainability and the Environment, Condensed Matter Physics, Electrical and Electronic Engineering
ISSN: 1062-7995
Publisher: Wiley
Note: Funding Information: The authors kindly acknowledge the data provided by Karl Berger (AIT) for the Pfaffstaetten system and Giosué Maugeri (RSE) for the RSE datasets. The research has received funding from the European Union's Horizon 2020 program under GA. No. 721452‐H2020‐MSCA‐ITN‐2016. This material is based upon work supported by the U.S. Department of Energy's Office of Energy Efficiency and Renewable Energy (EERE) under the Solar Energy Technologies Office Award Number 34366. Sandia National Laboratories is a multimission laboratory managed and operated by National Technology & Engineering Solutions of Sandia, LLC, a wholly owned subsidiary of Honeywell International Inc., for the U.S. Department of Energy's National Nuclear Security Administration under contract DE‐NA0003525. This paper describes objective technical results and analysis. Any subjective views or opinions that might be expressed in the paper do not necessarily represent the views of the U.S. Department of Energy or the United States Government. The authors thank the Department of Innovation, Research and University of the Autonomous Province of Bozen/Bolzano for covering the Open Access publication costs. Publisher Copyright: © 2021 The Authors. Progress in Photovoltaics: Research and Applications published by John Wiley & Sons Ltd.
(Peer reviewed)