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以月球表面反射率为参考的对地观测可见近红外相机绝对辐射定标

Absolute radiometric calibration with lunar surface reflectance as reference for earth-observing VNIR camera.

作者信息

Tan Wei, Wang Xiaoyan, He Hongyan, Qi Wenwen

机构信息

Beijing Institute of Space Mechanics and Electricity, Youyi Road 104#, Beijing 100094, China.

Beijing Key Laboratory of Optical Remote Sensing Technology, Satellite Calibration Team, Youyi Road 104#, Beijing 100094, China.

出版信息

Heliyon. 2022 Dec 1;8(12):e11776. doi: 10.1016/j.heliyon.2022.e11776. eCollection 2022 Dec.

Abstract

The absolute radiometric accuracy of earth-observing camera is crucial for the applications of natural resources, environment, agriculture and other industries. To continue the progress in this filed, a lunar surface reflectance based radiometric calibration approach is given in this paper. We chose IIM, M3, SP lunar models as references and GF-4 VNIR camera as sensor under calibrating. The lunar calibration sites were MS-2 site, Apollo-16 site and CE-3 site. The equivalent reflectance models of lunar were retrieved by Multiplying and integrating with the spectral response function of VNIR camera. Absolute radiometric calibrations with the equivalent reflectance models of lunar were carried out for 520-590nm, 630-690nm and 770-890nm spectral bands. The ground-based validation experiments were conducted with low, medium and high reflectance targets. The calibration accuracy was evaluated by comparing the relative errors of derived radiance after radiometric calibration with the benchmarks of TOA radiance transferred by in-situ measured reflectance. Lunar-based calibration models, lab and on-orbit filed-based models were used to compare the relative errors between proposed method and traditional way. The results showed that using IIM lunar model had better radiometric accuracy than other models, and SP model had the similar performance with traditional on-orbit filed-based model. The results indicated that using lunar to calibrate the earth-observing camera had the capability to improve the radiometric calibration accuracy.

摘要

对地观测相机的绝对辐射测量精度对于自然资源、环境、农业等行业的应用至关重要。为了在该领域继续取得进展,本文提出了一种基于月球表面反射率的辐射定标方法。我们选择IIM、M3、SP月球模型作为参考,GF-4可见光近红外相机作为待定标的传感器。月球定标场地为MS-2场地、阿波罗16号场地和嫦娥三号场地。通过与可见光近红外相机的光谱响应函数相乘并积分,反演得到月球的等效反射率模型。利用月球等效反射率模型对520-590nm、630-690nm和770-890nm光谱波段进行了绝对辐射定标。利用低、中、高反射率目标进行了地面验证实验。通过将辐射定标后导出的辐射亮度的相对误差与原位测量反射率传递的大气顶辐射亮度基准进行比较,评估定标精度。利用基于月球的定标模型、实验室模型和在轨场模型比较了该方法与传统方法之间的相对误差。结果表明,使用IIM月球模型的辐射测量精度优于其他模型,SP模型与传统在轨场模型性能相似。结果表明,利用月球对对地观测相机进行定标有能力提高辐射定标精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a944/9732132/59f63d3f854e/gr1.jpg

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