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DOI10.1117/12.2272784
GEO-LEO Reflectance Band Inter-comparison with BRDF and Atmospheric Scattering Corrections
Chang, Tiejun1; Xiong, Xiaoxiong (Jack)2; Keller, Graziela1; Wu, Xiangqian3
通讯作者Chang, Tiejun
会议名称Conference on Earth Observing Systems XXII
会议日期AUG 06-10, 2017
会议地点San Diego, CA
英文摘要

The inter-comparison of the reflective solar bands between the instruments onboard a geostationary orbit satellite and onboard a low Earth orbit satellite is very helpful to assess their calibration consistency. GOES-R was launched on November 19, 2016 and Himawari 8 was launched October 7, 2014. Unlike the previous GOES instruments, the Advanced Baseline Imager on GOES-16 (GOES-R became GOES-16 after November 29 when it reached orbit) and the Advanced Himawari Imager (AHI) on Himawari 8 have onboard calibrators for the reflective solar bands. The assessment of calibration is important for their product quality enhancement. MODIS and VIIRS, with their stringent calibration requirements and excellent on-orbit calibration performance, provide good references. The simultaneous nadir overpass (SNO) and ray-matching are widely used inter-comparison methods for reflective solar bands.


In this work, the inter-comparisons are performed over a pseudo-invariant target. The use of stable and uniform calibration sites provides comparison with appropriate reflectance level, accurate adjustment for band spectral coverage difference, reduction of impact from pixel mismatching, and consistency of BRDF and atmospheric correction. The site in this work is a desert site in Australia (latitude -29.0 South; longitude 139.8 East). Due to the difference in solar and view angles, two corrections are applied to have comparable measurements. The first is the atmospheric scattering correction. The satellite sensor measurements are top of atmosphere reflectance. The scattering, especially Rayleigh scattering, should be removed allowing the ground reflectance to be derived. Secondly, the angle differences magnify the BRDF effect. The ground reflectance should be corrected to have comparable measurements. The atmospheric correction is performed using a vector version of the Second Simulation of a Satellite Signal in the Solar Spectrum modeling and BRDF correction is performed using a semi-empirical model. AHI band 1 (0.47 mu m) shows good matching with VIIRS band M3 with difference of 0.15%. AHI band 5 (1.69 mu m) shows largest difference in comparison with VIIRS M10.


英文关键词Inter-comparison Radiometric calibration BRDF MODIS VIIRS GOES-16(GOES-R) Himawari-8
来源出版物EARTH OBSERVING SYSTEMS XXII
ISSN0277-786X
EISSN1996-756X
出版年2017
卷号10402
EISBN978-1-5106-1262-4
出版者SPIE-INT SOC OPTICAL ENGINEERING
类型Proceedings Paper
语种英语
国家USA
收录类别CPCI-S
WOS记录号WOS:000451886100060
WOS关键词CALIBRATION
WOS类目Engineering, Aerospace ; Remote Sensing ; Optics
WOS研究方向Engineering ; Remote Sensing ; Optics
资源类型会议论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/306518
作者单位1.Sci Syst & Applicat Inc, Lanham, MD 20706 USA;
2.NASA, Sci & Explorat Directorate, GSFC, Greenbelt, MD 20771 USA;
3.NOAA, NESDIS, STAR, College Pk, MD 20740 USA
推荐引用方式
GB/T 7714
Chang, Tiejun,Xiong, Xiaoxiong ,Keller, Graziela,et al. GEO-LEO Reflectance Band Inter-comparison with BRDF and Atmospheric Scattering Corrections[C]:SPIE-INT SOC OPTICAL ENGINEERING,2017.
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