International Intercomparison of Primary Photovoltaic Reference Cell Calibrations With Excellent Agreement

This study presents the results of an international intercomparison of primary calibration methods for photovoltaic (PV) reference devices according to IEC 60904‐4. The comparison involves three leading calibration laboratories—PTB, NLR, and AIST—representing independent traceability chains to the International System of Units (SI). Four world PV scale (WPVS) PV reference cells with distinct characteristics (linear, nonlinear, IR‐filtered, and UV‐filtered crystalline silicon devices) are circulated and calibrated using different primary methods, including differential spectral responsivity (DSR), direct sunlight, and solar simulator approaches. The measurand is the short‐circuit current I SC under standard test conditions STC ( I STC ). Calibration results are evaluated using weighted means and E n scores to assess consistency. Despite differing measurement principles and device‐specific challenges, all reported calibration values agree within their stated uncertainties (| E n | < 1). Maximum deviations range from 0.27% to 0.59%, depending on the device type. Observed drifts in two devices are attributed to degradation effects rather than methodological inconsistencies. The results demonstrate a high level of agreement between independent primary calibration methods and confirm the robustness of current traceability chains for PV reference devices.

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Publication Details

Journal
Solar RRL
Published
2026-09-10
DOI
https://doi.org/10.1002/solr.70475
Primary Topic
Photovoltaic System Optimization Techniques
Type
article
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article

International Intercomparison of Primary Photovoltaic Reference Cell Calibrations With Excellent Agreement

Ingo Kröger, Nikos Kopidakis, Sanekazu Igari, Tao Song
Solar RRL
Photovoltaic System Optimization Techniques
article

International Intercomparison of Primary Photovoltaic Reference Cell Calibrations With Excellent Agreement

Ingo Kröger, Nikos Kopidakis, Sanekazu Igari, Tao Song
article en

Abstract

This study presents the results of an international intercomparison of primary calibration methods for photovoltaic (PV) reference devices according to IEC 60904‐4. The comparison involves three leading calibration laboratories—PTB, NLR, and AIST—representing independent traceability chains to the International System of Units (SI). Four world PV scale (WPVS) PV reference cells with distinct characteristics (linear, nonlinear, IR‐filtered, and UV‐filtered crystalline silicon devices) are circulated and calibrated using different primary methods, including differential spectral responsivity (DSR), direct sunlight, and solar simulator approaches. The measurand is the short‐circuit current I SC under standard test conditions STC ( I STC ). Calibration results are evaluated using weighted means and E n scores to assess consistency. Despite differing measurement principles and device‐specific challenges, all reported calibration values agree within their stated uncertainties (| E n | < 1). Maximum deviations range from 0.27% to 0.59%, depending on the device type. Observed drifts in two devices are attributed to degradation effects rather than methodological inconsistencies. The results demonstrate a high level of agreement between independent primary calibration methods and confirm the robustness of current traceability chains for PV reference devices.

Solar RRLVol. 10(17)
Physikalisch-Technische Bundesanstalt (DE), National Solar Observatory (US), National Institute of Advanced Industrial Science and Technology (JP)
Openalex Percentile: Top 29%
Photovoltaic System Optimization Techniques
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International Intercomparison of Primary Photovoltaic Reference Cell Calibrations With Excellent Agreement — Ingo Kröger, Nikos Kopidakis, et al. · Solar RRL (2026) | TGRS Research Map | TGRS