[2] XIONG X X, SUN J Q, BARNES W, et al.. Multiyear on-orbit calibration and performance of Terra MODIS reflective solar bands [J]. IEEE Transactions on Geoscience and Remote Sensing, 2007, 45(4): 879-889.
[3] CAO C Y, XIONG J, BLONSKI S, et al.. Suomi NPP VIIRS sensor data record verification, validation, and long-term performance monitoring [J]. Journal of Geophysical Research: Atmospheres, 2013, 118(20): 11664-11678.
[5] WANG L, HU X Q, CHEN L.Wide dynamic nonlinear radiometric calibration of optical satellite sensors using multiple stable earth targets [J]. Journal of Remote Sensing, 2017, 21(6): 892-906. (in Chinese)
[6] WANG L, HU X Q, ZHENG Z J, et al.. Radiometric calibration tracking detection for FY-3A/MERSI by joint use of snow targets in south and north poles [J]. Acta Optical Sinica, 2018, 38(2): 171-181. (in Chinese)
[7] ZHI D D. Radiometric Recalibration for the Reflective Solar Bands of FengYun-3B Satellite Medium Resolution Spectral Imager And Its Application [D]. Hefei: University of Science and Technology of China, 2019. (in Chinese)
[8] ZHI D D, WEI W, ZHANG Y N, et al.. FengYun-3B satellite medium resolution spectral imager visible on-board calibrator radiometric output degradation analysis [J]. IEEE Transactions on Geoscience and Remote Sensing, 2019, 57(6): 3240-3251.
[10] LI C, XUE Y, LIU Q H, et al.. Post calibration of channels 1 and 2 of long-term AVHRR data record based on SeaWiFS data and pseudo-invariant targets [J]. Remote Sensing of Environment, 2014, 150: 104-119.
[11] HOOKER S B, MCCLAIN C R. The calibration and validation of SeaWiFS data [J]. Progress in Oceanography, 2000, 45 (3/4): 427-465.
[12] EPLEE R E, MEISTER G, PATT F S, et al.. On-orbit calibration of SeaWiFS [J]. Applied Optics, 2012, 51(36): 8702-8730.
[13] HELDER D, THOME K J, MISHRA N, et al.. Absolute radiometric calibration of landsat using a pseudo invariant calibration site [J]. IEEE Transactions on Geoscience and Remote Sensing, 2013, 51 (3): 1360-1369.
[14] BOUVET M. Radiometric comparison of multispectral imagers over a pseudo-invariant calibration site using a reference radiometric model [J]. Remote Sensing of Environment , 2014, 140: 141-154.
[15] SCHAAF C B, GAO F, STRAHLER A H, et al.. First operational BRDF, albedo nadir reflectance products from MODIS [J]. Remote Sensing of Environment, 2002, 83(1/2): 135-148.
[16] WANNER W, LI X W, STRAHLER A H. On the derivation of kernels for kernel-driven models of bidirectional reflectance [J]. Journal of Geophysical Research-Atmospheres, 1995, 100 (D10): 21077-21089.
[17] CHANDER G, MISHRA N, HELDER D L, et al.. Applications of Spectral Band Adjustment Factors (SBAF) for cross-calibration [J]. IEEE Transactions on Geoscience and Remote Sensing, 2013, 51(3): 1267-1281.
[18] TEILLET P M, FEDOSEJEVS G, THOME K J, et al.. Impacts of spectral band difference effects on radiometric cross-calibration between satellite sensors in the solar-reflective spectral domain [J]. Remote Sensing of Environment, 2007, 110(3): 393-409.
[19] ACHARYA P K, ADLER-GOLDEN S M, ANDERSON G P, et al.. Modtran Version 3.7/4.0 Users Manual [M]. 1998.