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首页> 外文期刊>Applied optics >Detector-level spectral characterization of the Suomi National Polar-orbiting Partnership Visible Infrared Imaging Radiometer Suite long-wave infrared bands M15 and M16
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Detector-level spectral characterization of the Suomi National Polar-orbiting Partnership Visible Infrared Imaging Radiometer Suite long-wave infrared bands M15 and M16

机译:Suomi国家极地轨道伙伴关系可见红外成像辐射计套件长波红外波段M15和M16的探测器级光谱表征

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摘要

The Suomi National Polar-orbiting Partnership (S-NPP) Visible Infrared Imaging Radiometer Suite (VIIRS) sensor data record (SDR) product achieved validated maturity status in March 2014 after roughly two years of on-orbit characterization (S-NPP spacecraft launched on 28 October 2011). During post-launch analysis the VIIRS Sea Surface Temperature (SST) Environmental Data Record (EDR) team observed an anomalous striping pattern in the daytime SST data. Daytime SST retrievals use the two VIIRS long-wave infrared bands: M15 (10.7 mu m) and M16 (11.8 mu m). To assess possible root causes due to detector-level spectral response function (SRF) effects, a study was conducted to compare the radiometric response of the detector-level and operational-band averaged SRFs of VIIRS bands M15 and M16. The study used simulated hyperspectral blackbody radiance data and clear-sky ocean hyperspectral radiances under different atmospheric conditions. It was concluded that the SST product is likely impacted by small differences in detector-level SRFs and that if users require optimal radiometric performance, detector-level processing is recommended for both SDR and EDR products. Future work should investigate potential SDR product improvements through detector-level processing in support of the generation of Suomi NPP VIIRS climate quality SDRs. (C) 2015 Optical Society of America
机译:Suomi国家极轨合作伙伴(S-NPP)可见红外成像辐射计套件(VIIRS)传感器数据记录(SDR)产品在经过大约两年的在轨表征后于2014年3月达到了已验证的成熟状态(S-NPP航天器于2011年10月28日)。在发射后分析期间,VIIRS海面温度(SST)环境数据记录(EDR)团队在白天SST数据中观察到了异常的条带化模式。白天的SST检索使用两个VIIRS长波红外波段:M15(10.7微米)和M16(11.8微米)。为了评估由于检测器级频谱响应函数(SRF)效应可能引起的根本原因,进行了一项研究,以比较VIIRS M15和M16的检测器级和操作带平均SRF的辐射响应。该研究使用了模拟的高光谱黑体辐射数据和不同大气条件下的晴空海洋高光谱辐射。结论是,SST产品可能受到探测器级SRF的微小差异的影响,如果用户需要最佳的辐射性能,则建议对SDR和EDR产品都采用探测器级处理。未来的工作应通过检测器级处理来研究潜在的SDR产品改进,以支持Suomi NPP VIIRS气候质量SDR的产生。 (C)2015年美国眼镜学会

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