Global S&T Development Trend Analysis Platform of Resources and Environment
DOI | 10.1002/2016JD025601 |
Modeling thermal emissive bands radiometric calibration impact with application to AVHRR | |
Chang, Tiejun1; Wu, Xiangqian2; Weng, Fuzhong2 | |
2017-03-16 | |
发表期刊 | JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES
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ISSN | 2169-897X |
EISSN | 2169-8996 |
出版年 | 2017 |
卷号 | 122期号:5 |
文章类型 | Article |
语种 | 英语 |
国家 | USA |
英文摘要 | A novel analytical model of the calibration error impact on the Earth radiance measurement from thermal emissive bands of sensors is developed. The goal is to assess the impact of calibration errors, to evaluate those errors and to perform correction. This model is applied in the correction of bias in Advanced Very High Resolution Radiometer (AVHRR)channels 4 and 5 observed from the intercomparison with Infrared Atmospheric Sounding Interferometer measurements. A two-step regression is used to separate the effects of calibration radiance errors from calibration coefficient errors. In the first step, the calibration radiance error, primarily due to internal calibration target (ICT) imperfections and temperature measurement error, is evaluated using the bias from selected Earth scenes with brightness temperatures close to the ICT temperature. The effects from the ICT imperfections and temperature measurement errors are analyzed collectively. The resulting estimation of the calibration radiance error is 0.30% for channel 4 and 0.33% for channel 5. After correcting the Earth scene radiance for these effects, the errors in the offset and nonlinear coefficient of instrument response are evaluated through the second step of the regression. A weighting function is used to account for the nonuniformity in the data distribution over the Earth radiance range. After the evaluation of the errors, removal of their effects can be achieved either through corrections of the calibration coefficients or correction of the measured radiance. The results are useful for the improvement of the AVHRR IR channel calibration algorithm. This model and two-step regression approach can also be applied to other similar broadband thermal infrared radiometric sensors. |
领域 | 气候变化 |
收录类别 | SCI-E |
WOS记录号 | WOS:000398064200019 |
WOS关键词 | HIGH-RESOLUTION RADIOMETER ; INFRARED CHANNELS ; NONLINEARITY CORRECTIONS ; INTER-CALIBRATION ; IASI |
WOS类目 | Meteorology & Atmospheric Sciences |
WOS研究方向 | Meteorology & Atmospheric Sciences |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | http://119.78.100.173/C666/handle/2XK7JSWQ/34133 |
专题 | 气候变化 |
作者单位 | 1.Sci Syst & Applicat Inc, Lanham, MD 20706 USA; 2.NOAA, NESDIS, STAR, College Pk, MD USA |
推荐引用方式 GB/T 7714 | Chang, Tiejun,Wu, Xiangqian,Weng, Fuzhong. Modeling thermal emissive bands radiometric calibration impact with application to AVHRR[J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,2017,122(5). |
APA | Chang, Tiejun,Wu, Xiangqian,&Weng, Fuzhong.(2017).Modeling thermal emissive bands radiometric calibration impact with application to AVHRR.JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,122(5). |
MLA | Chang, Tiejun,et al."Modeling thermal emissive bands radiometric calibration impact with application to AVHRR".JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES 122.5(2017). |
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