[1] Czapla-Myers J S, Leisso N P, Anderson N J, et al. On-orbit radiometric calibration of Earth-observing sensors using the Radiometric Calibration Test Site (RadCaTS) [C]. SPIE, 2012, 83902B: 1-9.
[2] Biggar S F. In-flight Methods for Satellite Sensor Absolute Radiometric Calibration [D]. Tucson: Doctorial Dissertation of Universit of Arizona, 1990.
[3] Schmechtig C, Santer R, Roger J, et al. Automatic ground-based station for vicarious calibration [C]. SPIE, 1997, 3221: 309-317.
[4] Czapla-Myers J S, Thome K J, Leisso N P. Radiometric calibration of earth-observing sensors using an automated test site at Railroad Valley, Nevada [J]. Can. J. Remote Sens., 2010, 36(5): 474-487.
[5] Kerola D X, Bruegge C J, Gross H N, et al. On-orbit calibration of the EO-1 Hyperion and Advanced Land Imager (ALI) sensors using the LED Spectrometer (LSpec) automated facility [J]. IEEE Trans. Geosci. Remote Sens., 2009, 47(4): 1244-1255.
[6] Thome K J, McCorkel J. Cross-calibration of imaging sensors using model based, SI-traceable predictions of at-sensor radiance
[C]. SPIE, 2012, 85100N: 1-10.
[7] Thome K J, Fox N. 2010 CEOS field reflectance intercomparisons lessons learned [C]. 2011 IEEE International Geoscience and Remote Sensing Symposium (IGARSS), 2011, Vancouver, BC.
[8] Czapla-Myers J S, Thome K J, Cocilovo B R, et al. Temporal, spectral, and spatial study of the automated vicarious calibration test site at Railroad Valley, Nevada [C]. SPIE, 2008 ,70810I: 1-9. |