Thesis (S.B. in Environmental Engineering Science)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering, 2009.Cataloged from PDF version of thesis.Includes bibliographical references (p. 57-61).The Soil Moisture Active Passive (SMAP) satellite, to be launched in 2013, will use both radiometer and radar data to estimate soil moisture. Improved soil moisture knowledge has many applications in hydroclimatology, numerical weather prediction, flood forecasting, and human health. In this thesis, an observing system simulation experiment (OSSE) was used to study the error structure of radiometer measurements using two different retrieval algorithms. In an OSSE, geophysical fields are used to create a model of surfac...
Monitoring soil moisture dynamics from local to global scales is essential for a wide range of appli...
Sensitivity analysis is critically needed to better understand the microwave emission model for soil...
Sensitivity analysis is critically needed to better understand the microwave emission model for soil...
The Soil Moisture Active and Passive (SMAP) mission is a NASA earth science mission aiming at improv...
Microwave radiometry has a long legacy of providing estimates of remotely sensed near surfacesoil mo...
Since 2012, the experts of Space Technology Institute have carried out the field experiments to obt...
A robust physics-based combined radar-radiometer, or Active-Passive, surface soil moisture and rough...
Knowledge of the temporal error structure for remotely sensed surface soil moisture retrievals can i...
An Observing System Simulation Experiment (OSSE) for the Aquarius/SAC-D mission has been developed f...
The NASA SMAP (Soil Moisture Active Passive) mission provides a global coverage of soil moisture mea...
Monitoring soil moisture dynamics from local to global scales is essential for a wide range of appli...
Monitoring soil moisture dynamics from local to global scales is essential for a wide range of appli...
Monitoring soil moisture dynamics from local to global scales is essential for a wide range of appli...
Monitoring soil moisture dynamics from local to global scales is essential for a wide range of appli...
Abstract — An important issue in the development of a dedi-cated space borne soil moisture sensor ha...
Monitoring soil moisture dynamics from local to global scales is essential for a wide range of appli...
Sensitivity analysis is critically needed to better understand the microwave emission model for soil...
Sensitivity analysis is critically needed to better understand the microwave emission model for soil...
The Soil Moisture Active and Passive (SMAP) mission is a NASA earth science mission aiming at improv...
Microwave radiometry has a long legacy of providing estimates of remotely sensed near surfacesoil mo...
Since 2012, the experts of Space Technology Institute have carried out the field experiments to obt...
A robust physics-based combined radar-radiometer, or Active-Passive, surface soil moisture and rough...
Knowledge of the temporal error structure for remotely sensed surface soil moisture retrievals can i...
An Observing System Simulation Experiment (OSSE) for the Aquarius/SAC-D mission has been developed f...
The NASA SMAP (Soil Moisture Active Passive) mission provides a global coverage of soil moisture mea...
Monitoring soil moisture dynamics from local to global scales is essential for a wide range of appli...
Monitoring soil moisture dynamics from local to global scales is essential for a wide range of appli...
Monitoring soil moisture dynamics from local to global scales is essential for a wide range of appli...
Monitoring soil moisture dynamics from local to global scales is essential for a wide range of appli...
Abstract — An important issue in the development of a dedi-cated space borne soil moisture sensor ha...
Monitoring soil moisture dynamics from local to global scales is essential for a wide range of appli...
Sensitivity analysis is critically needed to better understand the microwave emission model for soil...
Sensitivity analysis is critically needed to better understand the microwave emission model for soil...