Traceability of a CCD-Camera System for High-Temperature Measurements
A CCD camera, which has been specially equipped with narrow-band interference filters in the visible spectral range for temperature measurements above 1200 K, was characterized with respect to its temperature response traceable to ITS-90 and with respect to absolute spectral radiance responsivity. T...
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Published in: | International journal of thermophysics Vol. 36; no. 8; pp. 1784 - 1802 |
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01-08-2015
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Abstract | A CCD camera, which has been specially equipped with narrow-band interference filters in the visible spectral range for temperature measurements above 1200 K, was characterized with respect to its temperature response traceable to ITS-90 and with respect to absolute spectral radiance responsivity. The calibration traceable to ITS-90 was performed at a high-temperature blackbody source using a radiation thermometer as a transfer standard. Use of Planck’s law and the absolute spectral radiance responsivity of the camera system allows the determination of the thermodynamic temperature. For the determination of the absolute spectral radiance responsivity, a monochromator-based setup with a supercontinuum white-light laser source was developed. The CCD-camera system was characterized with respect to the dark-signal-non-uniformity, the photo-response-non-uniformity, the non-linearity, and the size-of-source effect. The influence of these parameters on the calibration and measurement was evaluated and is considered for the uncertainty budget. The results of the two different calibration schemes for the investigated temperature range from 1200 K to 1800 K are in good agreement considering the expanded uncertainty
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. The uncertainty for the absolute spectral responsivity of the camera is 0.56 %
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AbstractList | A CCD camera, which has been specially equipped with narrow-band interference filters in the visible spectral range for temperature measurements above 1200 K, was characterized with respect to its temperature response traceable to ITS-90 and with respect to absolute spectral radiance responsivity. The calibration traceable to ITS-90 was performed at a high-temperature blackbody source using a radiation thermometer as a transfer standard. Use of Planck’s law and the absolute spectral radiance responsivity of the camera system allows the determination of the thermodynamic temperature. For the determination of the absolute spectral radiance responsivity, a monochromator-based setup with a supercontinuum white-light laser source was developed. The CCD-camera system was characterized with respect to the dark-signal-non-uniformity, the photo-response-non-uniformity, the non-linearity, and the size-of-source effect. The influence of these parameters on the calibration and measurement was evaluated and is considered for the uncertainty budget. The results of the two different calibration schemes for the investigated temperature range from 1200 K to 1800 K are in good agreement considering the expanded uncertainty
(
k
=
2
)
. The uncertainty for the absolute spectral responsivity of the camera is 0.56 %
(
k
=
2
)
. |
Author | Krüger, U. Anhalt, K. Schmidt, F. Bünger, L. Taubert, R. D. |
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Cites_doi | 10.1007/s10765-011-1031-x 10.1088/0026-1394/46/5/018 10.1088/0026-1394/15/4/002 10.1364/AO.5.001265 10.1007/s10765-011-0922-1 10.1088/0026-1394/27/1/002 10.1088/0026-1394/40/2/315 10.1088/0026-1394/46/4/S23 10.1007/s10765-011-0988-9 10.1088/0026-1394/46/1/008 10.1088/0026-1394/37/5/67 10.1117/3.374903 |
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Keywords | Photo-response-non-uniformity Size-of-source effect (SSE) Dark-signal-non-uniformity IRMD Non-linearity Charge-coupled device (CCD) Imaging radiometer ) Absolute spectral radiance responsivity High temperature Thermodynamic temperature |
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References | BennettHEAppl. Opt.19665126510.1364/AO.5.0012651966ApOpt...5.1265B F. Sakuma, S. Hattori, Temperature, Its Measurement and Control in Science and Industry, vol. 5, ed. by J.F. Schooley (AIP, New York, 1982), pp. 421–427 KeawprasertTAnhaltKTaubertDRHartmannJInt. J. Thermophys.201132169710.1007/s10765-011-1031-x2011IJT....32.1697K http://www.technoteam.de/product_overview/lmk/index_eng.html. Accessed 3 July 2014 JungHJMetrologia19791517310.1088/0026-1394/15/4/0021979Metro..15..173J SaundersPInt. J. Thermophys.201132163310.1007/s10765-011-0988-92011IJT....32.1633S P. Saunders, T. Ricolfi, in Proceedings of TEMPMEKO ’96, 6th\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${th}$$\end{document}International Symposium on Temperature and Thermal Measurements in Industry and Science, ed. by P. Marcarino (Levrotto and Bella, Torino, 1997), pp. 329–334 JanesickJRScientific Charge-Coupled Devices2001BellinghamSPIE10.1117/3.374903 SaundersPMetrologia2003409310.1088/0026-1394/40/2/3152003Metro..40...93S JungHVerchJOptik19733895 SaundersPEdgarHMetrologia2009466210.1088/0026-1394/46/1/0082009Metro..46...62S HartmannJFischerJSeidelJMetrologia20003763710.1088/0026-1394/37/5/672000Metro..37..637H FischerJde PodestaMHillKDMoldoverMPitreLRusbyRSteurPTamuraOWhiteRWolberLInt. J. Thermophys.2011321210.1007/s10765-011-0922-12011IJT....32...12F BloembergenPMetrologia20094653410.1088/0026-1394/46/5/0182009Metro..46..534B Preston-ThomasHMetrologia199027310.1088/0026-1394/27/1/0021990Metro..27....3P MachinGBloembergenPAnhaltKHartmannJSadliMSaundersPWoolliamsEYamadaYYoonHWRealisation and Dissemination of Thermodynamic Temperature Above the Silver Point (1234.93 K), CCT-WG5 Document, CCT-10/12/rev12010SèvresBIPM KrügerUSchmidtFMetrologia200946S25210.1088/0026-1394/46/4/S232009Metro..46S.252K H. Yoon, P. Saunders, G. Machin, in Supplementary Information for the ITS-90: Section 6: Radiation Thermometry, pp. 1–13. http://www.bipm.org/en/publications/its-90_supplementary.html. Accessed 19 Mar 2015 Mise en pratique for the definition of the Kelvin, http://www.bipm.org/utils/en/pdf/MeP_K.pdf 1915_CR2 1915_CR4 H Preston-Thomas (1915_CR12) 1990; 27 JR Janesick (1915_CR7) 2001 T Keawprasert (1915_CR3) 2011; 32 P Saunders (1915_CR11) 2009; 46 HJ Jung (1915_CR8) 1979; 15 G Machin (1915_CR18) 2010 P Bloembergen (1915_CR9) 2009; 46 J Fischer (1915_CR14) 2011; 32 1915_CR17 H Jung (1915_CR16) 1973; 38 P Saunders (1915_CR10) 2011; 32 U Krüger (1915_CR5) 2009; 46 J Hartmann (1915_CR15) 2000; 37 1915_CR13 P Saunders (1915_CR19) 2003; 40 1915_CR1 HE Bennett (1915_CR6) 1966; 5 |
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SubjectTerms | Classical Mechanics Condensed Matter Physics Industrial Chemistry/Chemical Engineering Physical Chemistry Physics Physics and Astronomy |
Title | Traceability of a CCD-Camera System for High-Temperature Measurements |
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