IEEE Transactions on Geoscience and Remote Sensing · 2008 · 133 citations · 31 references
RadarSensor CalibrationEnvironmental MonitoringOcean SalinityEngineeringSynthetic Aperture RadarMeasurementCalibrationMicrowave Remote SensingRemote SensingEducationSoil MoistureInstrumentationEarth ScienceMicrowave Imaging Radiometer
The calibration of the Soil Moisture and Ocean Salinity (SMOS) payload instrument, known as Microwave Imaging Radiometer by Aperture Synthesis (MIRAS), is based on characterization measurements which are performed initially on-ground prior to launch and, subsequently, in-flight. A good calibration is a prerequisite to ensure the quality of the geophysical data. The calibration scheme encompasses both the spaceborne instrument and the ground data processing. Once the system has been calibrated, the instrument performance can be verified, and the higher level geophysical variables, soil moisture and ocean salinity, can be validated. In this paper, the overall calibration approach is presented, focusing on the main aspects relevant to the SMOS instrument design and mission requirements. The distributed instrument, comprising 72 receivers, leads to a distributed internal calibration approach supported by specific external calibration measurements. The relationship between the calibration data and the routine ground processing is summarized, demonstrating the inherent link between them. Finally, the approach to the in-flight commissioning activities is discussed.
31
J. H. Van Vleck, David Middleton · Proceedings of the IEEE · 1966 · 520 citations
Kevin McMullan, Mike Brown, Manuel Martín‐Neira et al. · IEEE Transactions on Geoscience and Remote Sensing · 2008 · 297 citations