Paper
18 December 2019 Standard transfer chain design of space-borne whiskbroom solar reflection spectrum radiation benchmark
Author Affiliations +
Proceedings Volume 11338, AOPC 2019: Optical Sensing and Imaging Technology; 113383K (2019) https://doi.org/10.1117/12.2548105
Event: Applied Optics and Photonics China (AOPC2019), 2019, Beijing, China
Abstract
The unification and recognition of meteorological parameter is the key to achieve long-time scale climate monitor, which is solved by space radiation benchmark with high precision. A space-borne whiskbroom solar reflection spectrum radiation benchmark is proposed in this paper, and the standard value transmission is more simple and reliable, achieved by the pendulum sweep institution with high stability. Based on the pendulum sweep institution, the spectral response of transfer and sun spectral radiometer and hyper-spectral earth imager is calibrated in-flight. And the primary benchmark is space-borne cryogenic absolute radiometer, whose absolute measurement uncertainty is 0.02%. Besides, the absolute measurement uncertainty of transfer and sun spectral radiometer and hyper-spectral earth imager is analyzed respectively in this paper, and the absolute measurement uncertainty is 0.23% and 0.63%.
© (2019) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Longfei Fan, Chengguang Cui, Yongqiang Li, Yunfei Li, Mengyu Zhang, and Yongxiang Guo "Standard transfer chain design of space-borne whiskbroom solar reflection spectrum radiation benchmark", Proc. SPIE 11338, AOPC 2019: Optical Sensing and Imaging Technology, 113383K (18 December 2019); https://doi.org/10.1117/12.2548105
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KEYWORDS
Calibration

Mirrors

Radiometry

Standards development

Diffusers

Lamps

Solar radiation

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