Zugriffsnummer 29010
Dokumenttyp Konferenzartikel
Sprache Englisch
Titel A guide to measuring solar UV spectra using array spectroradiometers
Autor(in); Institution
Blumthaler, Mario; Medical University Innsbruck, Biomedical Physics, Innsbruck, AUSTRIA
Gröbner, Julian; Physikalisch-Meteorologisches Observatorium Davos, World Radiation Center, Davos Dorf, SWITZERLAND
Egli, Luca; Physikalisch-Meteorologisches Observatorium Davos, World Radiation Center, Davos Dorf, SWITZERLAND
Nevas, Saulius; 4.1, Photometrie und angewandte Radiometrie, PTB-Braunschweig
Quelle/Jahr Radiation processes in the atmosphere and ocean (IRS2012) : proceedings of the International Radiation Symposium (IRC/IAMAS):(2013), 805 - 808
Schriftenreihe AIP conference proceedings: 1531
Herausgeber(in)
Calahan, Robert F.
ISBN 978-0-7354-1155-5
DOI
Verlag Melville, NY: American Institute of Physics
Konferenzangaben International Radiation Symposium, Berlin, 06-10, August, 2012, Germany
Klassifikationscode PACS: 07.60.Rd ; PACS: 07.60.Dq ; PACS: 42.68.Ca ; PACS: 93.85.-q
Freie Schlagworte Solar UV radiation ; Array spectroradiometers ; Stray light ; Noise equivalent irradiance
Zusammenfassung Array spectroradiometers are cost-effective instruments allowing fast measurement sequences to monitor the high variability of solar radiation. From the spectra any desired biologically weighted doses within their operational spectral range can be derived by post-processing. Therefore, array spectroradiometers have the potential to replace filter radiometers currently used in UV monitoring networks. However, they suffer significantly from stray light. Thus forroutine operation it is important to follow strict procedures for characterisation, operation and data post-processing, which are suggested in these guidelines. Themost important characteristics of array spectroradiometers are wavelength calibration, slit function, stray light properties, spectral structure of the dark signal, linearity, noise equivalent irradiance and spectral responsivity. For routine operation, temperature stabilization is absolutely necessary as well as automated dark signal measurements. Integration time and number of repetitions control the noise level and they have to be defined according to the measurement requirements. Data post-processing includes consideration of nonlinearity, dark signal with its spectral structure, integration time, stray light correction, spectral response function and weighting function.

Zitierung

Blumthaler, M., Gröbner, J., Egli, L., & Nevas, S. (2013). A guide to measuring solar UV spectra using array spectroradiometers. International Radiation Symposium, Berlin, 06-10, August, 2012, Germany. https://doi.org/10.1063/1.4804892

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