Research on Large-Area Blackbody Radiation Source for Infrared Remote Sensor Calibration
Because of the calibration requirements of large-area infrared remote-sensing equipment, a large-area blackbody radiation source with the area of 1.05 m × 1.05 m is developed at the National Institute of Metrology (NIM), China. The temperature range of the blackbody is from room temperature to 573 K...
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Published in | International journal of thermophysics Vol. 43; no. 9 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
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Springer US
01.09.2022
Springer Nature B.V |
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Abstract | Because of the calibration requirements of large-area infrared remote-sensing equipment, a large-area blackbody radiation source with the area of 1.05 m × 1.05 m is developed at the National Institute of Metrology (NIM), China. The temperature range of the blackbody is from room temperature to 573 K. A multiple temperature control technique is employed for improving the temperature stability and uniformity of the blackbody. The effects of the heating zone and material thickness on the temperature uniformity are investigated by thermodynamic simulation, and then the uniformity and stability of the blackbody temperature are tested. Retrieval results illustrate that the temperature uniformity of the blackbody radiation source system is less than ± 0.65 K. The temperature stability of the blackbody at all temperature points is less than 0.1 K in 10 min. The expanded combined standard uncertainty of the blackbody is 0.97 K at 373 K, 1.13 K at 473 K, and 1.53 K at 573 K. |
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AbstractList | Because of the calibration requirements of large-area infrared remote-sensing equipment, a large-area blackbody radiation source with the area of 1.05 m × 1.05 m is developed at the National Institute of Metrology (NIM), China. The temperature range of the blackbody is from room temperature to 573 K. A multiple temperature control technique is employed for improving the temperature stability and uniformity of the blackbody. The effects of the heating zone and material thickness on the temperature uniformity are investigated by thermodynamic simulation, and then the uniformity and stability of the blackbody temperature are tested. Retrieval results illustrate that the temperature uniformity of the blackbody radiation source system is less than ± 0.65 K. The temperature stability of the blackbody at all temperature points is less than 0.1 K in 10 min. The expanded combined standard uncertainty of the blackbody is 0.97 K at 373 K, 1.13 K at 473 K, and 1.53 K at 573 K. Because of the calibration requirements of large-area infrared remote-sensing equipment, a large-area blackbody radiation source with the area of 1.05 m × 1.05 m is developed at the National Institute of Metrology (NIM), China. The temperature range of the blackbody is from room temperature to 573 K. A multiple temperature control technique is employed for improving the temperature stability and uniformity of the blackbody. The effects of the heating zone and material thickness on the temperature uniformity are investigated by thermodynamic simulation, and then the uniformity and stability of the blackbody temperature are tested. Retrieval results illustrate that the temperature uniformity of the blackbody radiation source system is less than ± 0.65 K. The temperature stability of the blackbody at all temperature points is less than 0.1 K in 10 min. The expanded combined standard uncertainty of the blackbody is 0.97 K at 373 K, 1.13 K at 473 K, and 1.53 K at 573 K. |
ArticleNumber | 142 |
Author | Wang, Guangjun Sun, Yandong Ji, Yalan Hao, Xiaopeng Xing, Zhao Zhou, Jingjing Sima, Ruiheng Sun, Shuangcheng Song, Jian |
Author_xml | – sequence: 1 givenname: Yalan surname: Ji fullname: Ji, Yalan organization: Remote Sensing Calibration Laboratory, National Institute of Metrology, School of Energy and Power Engineering, Chongqing University – sequence: 2 givenname: Xiaopeng orcidid: 0000-0001-6356-7635 surname: Hao fullname: Hao, Xiaopeng email: haoxp@nim.ac.cn organization: Remote Sensing Calibration Laboratory, National Institute of Metrology – sequence: 3 givenname: Yandong surname: Sun fullname: Sun, Yandong organization: Remote Sensing Calibration Laboratory, National Institute of Metrology – sequence: 4 givenname: Zhao surname: Xing fullname: Xing, Zhao organization: Remote Sensing Calibration Laboratory, National Institute of Metrology – sequence: 5 givenname: Jian surname: Song fullname: Song, Jian organization: Remote Sensing Calibration Laboratory, National Institute of Metrology – sequence: 6 givenname: Jingjing surname: Zhou fullname: Zhou, Jingjing organization: Remote Sensing Calibration Laboratory, National Institute of Metrology – sequence: 7 givenname: Ruiheng surname: Sima fullname: Sima, Ruiheng organization: Remote Sensing Calibration Laboratory, National Institute of Metrology – sequence: 8 givenname: Shuangcheng surname: Sun fullname: Sun, Shuangcheng organization: School of Energy and Power Engineering, Chongqing University – sequence: 9 givenname: Guangjun surname: Wang fullname: Wang, Guangjun organization: School of Energy and Power Engineering, Chongqing University |
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Keywords | Large-area blackbody radiation source Temperature uniformity Infrared remote sensing Radiation calibrations Temperature stability |
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SubjectTerms | Black body radiation Calibration Classical Mechanics Condensed Matter Physics Geophysics Industrial Chemistry/Chemical Engineering Infrared radiation Physical Chemistry Physics Physics and Astronomy Radiation Radiation sources Remote sensing Remote sensors Room temperature Temperature control Thermodynamics |
Title | Research on Large-Area Blackbody Radiation Source for Infrared Remote Sensor Calibration |
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