[1] Li Jiaguo. HJ-1B IRS thermal infrared band in-flight radiometric calibration and application[D]. Beijing: Institute of Remote Sensing Applications Chinese Academy of Sciences, 2010: 5-9. (in Chinese)
[2]
[3] Slater P N, Bigger S F, Thome K J, et al. Vicarious radiometric calibrations of EOS sensors[J]. J of Atmospheric and Oceanic Technology, 1996, 13(2): 349-359.
[4] 李家国. HJ-1B IRS热红外通道在轨绝对辐射定标与应用研究[D]. 北京: 中国科学院遥感应用研究所, 2010: 5-9.
[5] Han Qijin, Min Xiangjun, Fu Qiaoyan. Research of onboard calibration and cross-calibration for thermal infrared channel of HJ-1B[J]. Spacecraft Recovery and Remote Sensing, 2009, 30(4): 42-48. (in Chinese)
[6]
[7]
[8] Sun Ke, Fu Qiaoyan, Qi Xueyong. Radiometric cross-calibration of thermal infrared channel of IRS sensor on HJ-1B satellite[J]. Infrared and Laser Engineering, 2010, 39(5): 785-790. (in Chinese)
[9] Han Qijin, Min Xiangjun, Fu Qiaoyan. In-flight absolute radiometric calibration for thermal infrared band of HJ-1B[J]. Journal of Remote Sensing, 2010, 14(6): 1219-1225. (in Chinese)
[10]
[11] Rong Zhiguo, Qiu Kangmu, Hu Xiuqing, et al. Comparison of pre-launch calibration in lab with the radiometric calibration in orbit for FY-2B meteorological satellitess IR channel[J]. J Infrared Millim Waves, 2002, 21(6): 408-412. (in Chinese)
[12] 韩启金, 闵祥军, 傅俏燕. 环境一号 B星热红外通道星上定标与交叉定标研究[J]. 航天返回与遥感, 2009, 30(4): 42-48.
[13]
[14] Schott J R, Barsi J A, Bryce L, Nordgren, et al. Calibration of Landsat thermal data and application to water resource studies[J]. Remote Sensing of Environment, 2001, 78(1-2): 108-117.
[15] Michael Sicard, Paul R Spyak, Gerard Brogniezm, et al. Thermal-infrared field radiometer for vicarious cross-calibration: characterization and comparisons with other field instruments[J]. Optical Engineering, 1999, 38(2): 345-356.
[16]
[17] 孙珂, 傅俏燕, 亓学勇. HJ-1B卫星IRS传感器热红外通道交叉定标[J]. 红外与激光工程, 2010, 39(5): 785-790.
[18] Michael L, Christopher P, Gerard B, et al. A high-accuracy multiwavelength radiometer for in situ measurements in the thermal infrared. Part I: Characterization of the Instrument[J]. Journal of Atmospheric and Oceanic Technology, 2000, 17: 1203-1214.
[19] Zhu Li. Study of in-flight radiometric calibration and surface temperature retrieval for infrared camera[D]. Beijing: Institute of Remote Sensing Applications Chinese Academy of Sciences, 2008: 32-36. (in Chinese)
[20]
[21]
[22] James M P. Calibration of satellite sensors in the thermal infrared[C]//SPIE, 1992, 1762: 108-117.
[23] Zhang Yong. Study on thermal infrared remote sensors' absolutely radiometric calibrations[D]. Beijing: Institute of Remote Sensing Applications Chinese Academy of Sciences, 2006: 65-69. (in Chinese)
[24] 韩启金, 闵祥军, 傅俏燕. HJ-1B热红外波段在轨绝对辐射定标[J]. 遥感学报, 2010, 14(6): 1219-1225.
[25] Xiong X, Chiang K, Guenther B, et al. Modis thermal emissive bands calibration algorithm and on-orbit performance[C]//SPIE, 2003, 4891: 392-401.
[26]
[27]
[28] Berk A, Anderson G P, Acharya P K, et al. MODTRAN4 version 3 revision 1 USERS MANUAL, US: Air Force Research Laboratory[P]. 2003.
[29] Hu Xiuqing, Rong Zhiguo, Qiu Kangmu, et al. In-flight radiometric calibration for thermal channels of FY-1C meteorological satellite sensors using Qinghai lake, water surface radiometric calibration site[J]. Journal of Remote Sensing, 2002, 6(5): 328-333. (in Chinese)
[30] 戎志国, 邱康睦, 胡秀清, 等. FY-2B气象卫星红外通道发射前实验室定标与在轨辐射定标比较[J]. 红外与毫米波学报, 2002, 21(6): 408-412.
[31]
[32] Gao Hailiang, Gu Xingfa, Yu Tao, et al. HJ-1A HIS on-orbit radiometric calibration and validation research[J]. Science China Technological Sciences, 2010, l40(11): 1312-1321. (in Chinese)
[33] Wan Zhengming, Zhang Yulin, Li Zhaoliang. Preliminary estimate of calibration of the moderate- resolution imaging spectro-radiometer thermal infrared data using Lake Titicaca[J]. Remote Sensing of Environment, 2002, 80: 497-515
[34]
[35]
[36] Hu Xiuqing, Rong Zhiguo, Qiu Kangmu, et al. In-flight radiometric calibration for thermal channels of FY-1C and FY-2B meteorological satellite sensors using Qinghai lake[J]. Chinese Journal of Space Science, 2001, 21(4): 370-379. (in Chinese)
[37]
[38] Jin Weiqi, Liu Chongliang, Xiu Jinli. Dynamic infrared nonuniformity correction and radiometric calibration technology using U-shaped blackbody[J]. Infrared and Laser Engineering, 2012, 41(2): 273-277. (in Chinese)
[39]
[40] 朱利. 热红外辐射定标及地表温度反演研究[D]. 北京: 中国科学院遥感应用研究所, 2008: 32-36.
[41]
[42]
[43]
[44] 张勇. 遥感传感器热红外数据辐射定标研究[D]. 北京: 中国科学院遥感应用研究所, 2006: 65-69.
[45]
[46]
[47]
[48]
[49] 胡秀清, 戎志国, 邱康睦, 等. 利用青海湖水面辐射校正场对FY-1C气象卫星热红外传感器进行绝对辐射定标[J]. 遥感学报, 2002, 6(5): 328-333.
[50]
[51]
[52] 高海亮, 顾行发, 余涛, 等. 环境卫星HJ1A超光谱成像仪在轨辐射定标及真实性检验[J]. 中国科学E辑, 2010, l40(11): 1312-1321.
[53]
[54]
[55]
[56] 胡秀清, 戎志国, 邱康睦, 等. 利用青海湖对 FY-1C、FY-2B气象卫星热红外通道进行在轨辐射定标空间科学学报, 2001, 21(4): 370-379.
[57]
[58]
[59] 金伟其, 刘崇亮, 修金利. 基于U形边框黑体光阑的红外成像动态辐射定标与校正技术[J]. 红外与激光工程, 2012, 41(2): 273-277.