Daylight Photoluminescence Imaging via Optical String Switching

Author:

Kunz Oliver1ORCID,Weber Juergen W.1,Rey Germain12,Juhl Mattias13,Trupke Thorsten1

Affiliation:

1. School of Photovoltaic and Renewable Energy Engineering University of New South Wales Sydney 2052 Australia

2. Université Grenoble Alpes, CEA‐Liten, INES 50 avenue du Lac Léman Le Bourget‐du‐Lac F‐73375 France

3. 5B 4 Kent Road Mascot NSW 2020 Australia

Abstract

Optical switching of the electrical operating point of individual crystalline silicon modules has previously been demonstrated as an elegant noncontact method for outdoor photoluminescence image acquisition in full daylight, with the important advantage that no modifications to the system wiring are required. Herein, a modified approach for photoluminescence imaging acquisition in large photovoltaic arrays, enabled by simultaneous optical switching of all modules within a series‐connected string, is demonstrated. This improved method is a simpler approach and allows for significantly increased measurement throughput. Quantitative assessment of image data acquired in full daylight is possible since all modules in a string are series connected and operate at the same current. Excellent agreement is reported for voltage variations between modules that are inferred from daylight photoluminescence image data and measurements conducted under controlled laboratory conditions.

Funder

Australian Renewable Energy Agency

Publisher

Wiley

Reference38 articles.

1. Terawatt-scale photovoltaics: Transform global energy

2. How Did Solar Cells Get So Cheap?

3. Photovoltaic technology and visions for the future

4. International Renewable Energy Agency Renewable Power Generation Costs in 2022 2023[Online] www.irena.org.

5. 22.8% efficient silicon solar cell

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