Affiliation:
1. Institute for Renewable Energy Eurac Research Viale Druso 1 39100 Bolzano Italy
2. 3E Kalkkaai 6 Quai à la Chaux 1000 Brussels Belgium
Abstract
Detailed knowledge of the performance of photovoltaic (PV) systems over their full lifetime is invaluable for evaluating their profitability and sustainability. PV systems are known to have gradually declining performance; for long‐term yield assessments, typically a performance loss rate (PLR) of −0.5% yr−1 is assumed. Herein, monitoring data of thousands of commercial PV systems is evaluated to determine how performance loss trends and PLR values are affected by operational climate, PV module technology, and other parameters. Using performance ratio (PR) measurements from almost 6000 PV systems, the long‐term trends in PR and overall PLR value are evaluated. Subsequently, the relation between climate, performance loss, and PLR for three different climate classification schemes is evaluated. Finally, how long‐term performance loss trends and estimated PLR values differ for PV module technology and other parameters are evaluated. The results show that in general, PV systems that have operated now for at least 3 but up to 25 years show a PLR of roughly −1% yr−1, indicating substantially higher performance loss compared to typical estimates used for new PV systems. Climate by itself does not seem to be the leading factor that determines overall performance loss trends or PLR values in the dataset analyzed.
Reference33 articles.
1. D.Moser S.Lindig M.Richter J.Ascencio‐Vasquez I.Horvath B.Müller M.Green J.Vedde M.Herz B.Herteleer K. A.Weiss B.Stridh IEA PVPS Task 13 Subtask 2.1: Uncertainties in Yield Assessments and PV LCOE International Energy Agency Paris France2020.
2. Degradation Science from Nanometers to Kilometers: A Pathway to Rapid Detection for Reliable Photovoltaics
3. IEC 61215‐1:2021 Crystalline Silicon Terrestrial Photovoltaic PV Modules ‐ Design Qualification and Type Approval‐ Part 1: Test requirements International Electrotechnical Commission Geneva CH2021.
4. M.Owen‐Bellini P.Hacke S.Spataru D.Miller M.Kempe in35th EUPVSEC Proc. September2018.
5. Error analysis of aged modules with cracked polyamide backsheets
Cited by
3 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献