
Absolute Calibration of Optical Satellite Sensors Using
The approach was based on use of the Terra MODIS as the radiometer to develop an absolute calibration model for the spectral channels
Absolute Calibration of Optical Satellite Sensors Using Libya 4
They developed an absolute calibration model using the Libya 4 test site, where Terra MODIS was used as the calibrated radiometer, and hyperspectral observations from EO-1 Hyperion
Absolute Calibration of Optical Satellite Sensors Using Libya 4 Pseudo
The objective of this paper is to report the improvements in an empirical absolute calibration model developed at South Dakota State University using Libya 4 (+28.55°, +23.39°) pseudo invariant
An assessment of African test sites in the context of a global network
The Committee on Earth Observation Satellites (CEOS) Infrared and Visible Optical Sensors (IVOS) subgroup members established a set of CEOS-endorsed globally distributed
Absolute calibration of optical satellite sensors using Libya 4 Pseudo
Abstract Pseudo Invariant Calibration Sites, or PICS, have been used extensively for long-term trending of optical satellite sensors, as well as cross-calibration of these sensors.
Absolute Calibration of Optical Satellite Sensors Using Libya 4 Pseudo
PICS have been widely used for monitoring temporal stability and cross calibration of optical sensors, but only few have explored the possibility of using PICS to develop absolute calibration model.
Libya 2 | EROS CalVal Center of Excellence
The Libya 2 Pseudo-Invariant Calibration Site (PICS), located in the Sahara Desert, is a well-established reference site for the calibration and validation of optical
This reference is intended for preliminary fiber optic splice closure research. Compatibility, splice capacity, sealing class, tray layout, protection sleeves, installation methods, test limits and applicable standards must be verified for the specific project.