Design of a Compact Transfer Radiometer for a Radiometric Benchmark Transfer Chain

In order to meet the high-accuracy calibration requirements of satellite remote sensing instruments, a transfer radiometer for an on-orbit radiometric benchmark transfer chain has been developed, which provides vital technical support for realizing the radiometric calibration uncertainty of the orde...

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Bibliographic Details
Main Authors: Kaichao Lei, Xin Ye, Zhiwei Xia, Nan Xu, Shuqi Li, Yachao Zhang, Yuwei Wang, Zhiwei Liu, Zhigang Li
Format: Article
Language:English
Published: MDPI AG 2022-09-01
Series:Sensors
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Online Access:https://www.mdpi.com/1424-8220/22/18/6795
Description
Summary:In order to meet the high-accuracy calibration requirements of satellite remote sensing instruments, a transfer radiometer for an on-orbit radiometric benchmark transfer chain has been developed, which provides vital technical support for realizing the radiometric calibration uncertainty of the order of 10<sup>−3</sup> for remote sensing instruments. The primary role of the transfer radiometer is to convert from the spectral power responsivity traceable to a cryogenic radiometer to the spectral radiance responsivity and transfer it to the imaging spectrometer. At a wavelength of 852.1 nm, the combined uncertainty of the radiance measurement comparison experiment between the transfer radiometer and a radiance meter is 0.43% (k = 1), and the relative deviation of the measurements between the transfer radiometer and the radiance meter is better than 0.36%, which is better than the combined uncertainty of the radiance measurement comparison experiment. This demonstrates that the transfer radiometer can achieve radiance measurements with a measurement uncertainty better than 0.3% (k = 1).
ISSN:1424-8220