Results from Verification of Reference Irradiance and Radiance Sources Laboratory Calibration Experiment Campaign
Abstract
:1. Introduction
Fiducial Reference Measurements (FRM) are a suite of independent, fully characterized, and traceable ground measurements that follow the guidelines outlined by the Group on Earth Observations (GEO)/CEOS Quality Assurance framework for Earth Observation (QA4EO). These FRM provide the maximum Return On Investment (ROI) for a satellite mission by delivering, to users, the required confidence in data products, in the form of independent validation results and satellite measurement uncertainty estimation, over the entire end-to-end duration of a satellite mission [7].
2. Methods
2.1. Layout and Organisation of the Comparisons
2.1.1. Irradiance Comparison
- the participants had various different SI-traceability routes for their lamps, i.e., a number of different NMIs providing their calibration. If all results were shown relative to the NPL values, then this might give the impression that traceability to NPL is ’correct’ or ’best’ whereas traceability to any NMI should be regarded as equally acceptable.
- A few of the lamps were recently calibrated at NPL and using a simple ratio to the NPL scale would have shown them to be performing almost ’perfectly’ and thus give a misleading and biased comparison.
- Presenting the results in terms of the agreement between each lamp and the mean of all of the lamps shows how well measurements of the different participants agree with each other, regardless of the traceability route. This was the key aim of the comparison and this form of presentation gives the clearest indication of that.
- the ratio between the NPL scale and the mean of all the participants’ lamps is also included, which gives the confidence that the linkage to SI is sound in all cases.
2.1.2. Radiance Comparison
3. Results
3.1. Irradiance
3.2. Radiance
4. Discussion
5. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
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Organisation | |
---|---|
CSIRO | Commonwealth Scientific and Industrial Research Organisation, Australia |
DLR-IMF | Remote Sensing Technology Institute, Deutsches Zentrum für Luft und Raumfahrt, Germany |
JRC | European Commission—DG Joint Research Centre |
LOV-IMEV | Laboratoire d’Océanographie de Villefranche, France |
NERC-FSF | Natural Environment Research Council’s Field Spectroscopy Facility, UK |
NIVA | Norsk Institutt for Vannforskning, Norway |
NOAA | National Oceanic and Atmospheric Administration, USA |
NPL | National Physical Laboratory, UK |
TO | Tartu Observatory, Estonia |
Satlantic | Satlantic Sea Bird Scientific, Canada |
Participant/ | Lamp-Panel Distance | Reflectance Standard | ||
---|---|---|---|---|
Calibration Set-Up | in mm | Type | Reflectance in % | Size in Inches |
A | 500 | Spectralon | 99 | 10 × 10 |
B | 750 | Spectralon | 99 | 10 × 10 |
C | 1000 | Spectralon | 99 | 18 × 18 |
D | 500 | Spectralon | 99 | 18 × 18 |
E | 1000 | Spectralon | 99 | 18 × 18 |
F | 500 | Spectralon | 99 | 10 × 10 |
G | 1300 | Spectralon | 99 | 18 × 18 |
H | 500 | Zenith Lite | 95 | 200 mm × 200 mm |
I | 500 | Spectralon | 99 | 10 × 10 |
J | 1000 | Spectralon | 99 | 10 × 10 |
K | 500 | Spectralon | 99 | 12 × 12 |
L | 500 | Spectralon | 99 | 10 × 10 |
M | 500 | Gigahertz-Optik | 98 | 12 × 12 |
Wavelength (nm) | Example of a Lamp Ratio |
---|---|
Uncertainty | |
350 | 1.6% |
360 | 1.7% |
370 | 1.7% |
380 | 1.7% |
390 | 1.5% |
400 | 1.5% |
450 | 1.1% |
500 | 1.1% |
600 | 1.0% |
700 | 1.0% |
800 | 1.0% |
900 | 0.9% |
Band (nm) | Participant | Participant | Participant |
---|---|---|---|
with Low u | with Middle u | with High u Value | |
412 | 2.0% | 2.4% | 3.1% |
443 | 1.8% | 2.4% | 2.9% |
491 | 1.8% | 2.2% | 2.7% |
510 | 1.8% | 2.3% | 2.7% |
556 | 1.8% | 2.2% | 2.5% |
667 | 1.8% | 2.1% | 2.5% |
684 | 1.8% | 2.1% | 2.5% |
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Białek, A.; Goodman, T.; Woolliams, E.; Brachmann, J.F.S.; Schwarzmaier, T.; Kuusk, J.; Ansko, I.; Vabson, V.; Lau, I.C.; MacLellan, C.; et al. Results from Verification of Reference Irradiance and Radiance Sources Laboratory Calibration Experiment Campaign. Remote Sens. 2020, 12, 2220. https://doi.org/10.3390/rs12142220
Białek A, Goodman T, Woolliams E, Brachmann JFS, Schwarzmaier T, Kuusk J, Ansko I, Vabson V, Lau IC, MacLellan C, et al. Results from Verification of Reference Irradiance and Radiance Sources Laboratory Calibration Experiment Campaign. Remote Sensing. 2020; 12(14):2220. https://doi.org/10.3390/rs12142220
Chicago/Turabian StyleBiałek, Agnieszka, Teresa Goodman, Emma Woolliams, Johannes F. S. Brachmann, Thomas Schwarzmaier, Joel Kuusk, Ilmar Ansko, Viktor Vabson, Ian C. Lau, Christopher MacLellan, and et al. 2020. "Results from Verification of Reference Irradiance and Radiance Sources Laboratory Calibration Experiment Campaign" Remote Sensing 12, no. 14: 2220. https://doi.org/10.3390/rs12142220
APA StyleBiałek, A., Goodman, T., Woolliams, E., Brachmann, J. F. S., Schwarzmaier, T., Kuusk, J., Ansko, I., Vabson, V., Lau, I. C., MacLellan, C., Marty, S., Ondrusek, M., Servantes, W., Taylor, S., Van Dommelen, R., Barnard, A., Vellucci, V., Banks, A. C., Fox, N., ... Casal, T. (2020). Results from Verification of Reference Irradiance and Radiance Sources Laboratory Calibration Experiment Campaign. Remote Sensing, 12(14), 2220. https://doi.org/10.3390/rs12142220