红外与激光工程, 2016, 45 (3): 0304004, 网络出版: 2016-04-05   

基于历史数据的HJ-1B/IRS热红外通道定标与分析

Calibration and analysis of HJ-1B/IRS thermal infrared channel based on the historical data
作者单位
1 中国科学院遥感与数字地球研究所,北京100101
2 中国矿业大学(北京), 北京 100083
3 环境保护部卫星环境应用中心,北京100094
4 中国农业科学院农业资源与农业区划研究所, 北京 100081
摘要
为获取2013年HJ-1B/IRS热红外通道(B08)绝对辐射定标系数,以TERRA/MODIS为参考传感器,以青海湖为研究区域,采用双通道差分模型进行交叉定标。对比分析不同观测角度、成像时差对定标精度的影响,结果表明,参考传感器观测角度30°以内、成像时差1 h左右交叉定标条件最佳,且回归拟合的定标系数精度最高。通过采用2013年10月26日宁德附近海域星地同步实验数据进行精度验证,结果表明,此定标系数得到的表观辐亮度误差在0.02 Wm-2μm-1sr-1 以内,表观亮温误差在0.15 ℃以内。同时,通过与历年辐射定标系数(2008~2012年)进行对比,所得定标系数精度分别提高98.50%、98.24%、90.21%、20.87%和98.31%。总之,此文定标系数精度较高、结果可靠,可应用于IRS B08通道。
Abstract
To obtain the absolute radiation calibration coefficient of IRS B08 in 2013,TERRA/MODIS was used as the reference sensor, Qinghai lake was taken as the research object, twin-channel difference model was applied to cross-calibration. By comparing the influence of different observation angles and different of imaging receiving time on calibration precision, it can be concluded that the best cross-calibration condition is the observation angle within 30° and the difference of imaging receiving time about 1 hour. Under this condition, calibration accuracy of regression fitting is the highest. According to the precision verification using satellite-ground synchronous experiment data around Ningde area on 26, October, 2013, result shows that error of apparent radiance and brightness temperature is within 0.02 Wm-2μm-1sr-1 and 0.15 ℃ respectively. Besides, compared with the historical calibration coefficients from 2008 to 2010, the new calibration coefficients of 2013 increased by 98.50%, 98.24%, 90.21%, 20.87% and 98.31% respectively. Overall, the obtained calibration coefficient has a high accuracy, that can be used to the IRS B08.

杨红艳, 李家国, 朱利, 殷亚秋, 张永红, 雷秋良, 陈宜金. 基于历史数据的HJ-1B/IRS热红外通道定标与分析[J]. 红外与激光工程, 2016, 45(3): 0304004. Yang Hongyan, Li Jiaguo, Zhu Li, Yin Yaqiu, Zhang Yonghong, Lei Qiuliang, Chen Yijin. Calibration and analysis of HJ-1B/IRS thermal infrared channel based on the historical data[J]. Infrared and Laser Engineering, 2016, 45(3): 0304004.

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