PAU-SA: A Synthetic Aperture Interferometric Radiometer Test Bed for Potential Improvements in Future Missions
نویسندگان
چکیده
The Soil Moisture and Ocean Salinity (SMOS) mission is an Earth Explorer Opportunity mission from the European Space Agency (ESA). Its goal is to produce global maps of soil moisture and ocean salinity using the Microwave Imaging Radiometer by Aperture Synthesis (MIRAS). The purpose of the Passive Advanced Unit Synthetic Aperture (PAU-SA) instrument is to study and test some potential improvements that could eventually be implemented in future missions using interferometric radiometers such as the Geoestacionary Atmosferic Sounder (GAS), the Precipitation and All-weather Temperature and Humidity (PATH) and the Geostationary Interferometric Microwave Sounder (GIMS). Both MIRAS and PAU-SA are Y-shaped arrays with uniformly distributed antennas, but the receiver topology and the processing unit are quite different. The purpose of this work is to identify the elements in the MIRAS's design susceptible of improvement and apply them in the PAU-SA instrument demonstrator, to test them in view of these future interferometric radiometer missions.
منابع مشابه
Application of Displacement Map Produced by Interferometric Synthetic Aperture Radar Technique in Height Datum Determination in the Subsidence Area
Damages due to subsidence such as destruction of watering system and agricultural fertile soil, wells increasing, damage to the roads, bridges and high ways and disordering in the water and gas supplying usually are irreparable and costly. As a huge amount bench marks of height network of Iran are placed in the subsidence area, changing their heights is a challenge for NCC. In this study, a new...
متن کاملCalibration of the TUD Ku-band Synthetic Aperture Radiometer
The TUD Synthetic Aperture Radiometer is a 2-channel demonstration model that can simulate a thinned aperture radiometer having an unfilled aperture consisting of several small antenna elements. Aperture synthesis obtained by interferometric measurements using the antenna elements in pairs, followed by an image reconstruction based on an inverse Fourier transform, results in an imaging instrume...
متن کاملThe Ka-band Interferometric Synthetic Aperture Radiometer for High Spatial Resolution
The Ka-band interferometric radiometer is developed as a demonstration model of 2-D interferometric radiometer to evaluate sub-Y-type array which was proposed by the research group SSL at K-JIST. This new antenna configuration is proposed for high spatial resolution imaging radiometer and it shows better performance than conventional Y-type array. The implemented radiometer is developed at 37 G...
متن کاملEvaluation of Imaging Performance for Sub-Y-type Interferometric Synthetic Aperture Radiometer
The two-dimensional interferometric synthetic aperture radiometer measures the brightness temperature distribution using two-dimensional antenna array without scanning. It has been reported that Y-type array configuration with equally spaced antennas is optimal in terms of a narrow 3dB beamwidth and wide synthesized field-of-view (FOV). The sub-Y-type array was suggested to improve the spatial ...
متن کاملInSAR Microsatellite Constellations Enabled by Formation Flying and Onboard Processing Capabilities
The advancing development of low-cost small satellite platforms is a compelling driver for future remote sensing constellation missions. Multistatic interferometric synthetic aperture radar (InSAR) is a promising payload for such missions, potentially also in combination with additional remote sensing data. Significant challenges associated with using low-cost platforms for multistatic interfer...
متن کامل