The SMAP (Soil Moisture Active/Passive) satellite provides global soil moisture (SM) estimates that can be used for scientific research and applications (such as the hydrological cycle, agriculture, ecology, and land atmosphere interactions). Currently, SMAP provides the enhanced radiometer-only SM product (L2SMP) at 9 km grid resolution. However, this spatial resolution is still not enough to satisfy the needs of some studies that require a finer spatial resolution SM product, particularly in agricultural and watershed applications. This study applied a downscaling algorithm to the SMAP 9 km SM product to produce a 1 km resolution over the CONUS (Contiguous United States). The downscaling algorithm is based on the relationship between temp...
Since the beginning of its routine science operation in March 2015, the NASA SMAP observatory has be...
The NASA SMAP (Soil Moisture Active Passive) mission provides a global coverage of soil moisture mea...
Soil moisture (SM) with a high spatial resolution plays a paramount role in many local and regional ...
Remotely sensed soil moisture retrieved by the Soil Moisture Active and Passive (SMAP) sensor is cur...
The SMAP (Soil Moisture Active Passive) mission provides global surface soil moisture product at 36 ...
Remotely sensed soil moisture retrieved by the Soil Moisture Active and Passive (SMAP) sensor is cur...
In the past decade, a variety of algorithms have been introduced to downscale passive microwave soil...
The Soil Moisture Active Passive (SMAP) mission provides a global surface soil moisture (SM) product...
Improving the spatial resolution of microwave satellite soil moisture (SM) products is important for...
NASA's Soil Moisture Active Passive (SMAP) mission launched on January 31, 2015 into a sun-synchrono...
Improving the spatial resolution of microwave satellite soil moisture (SM) products is important for...
Soil moisture (SM) applications in terrestrial hydrology require higher spatial resolution soil mois...
The objectives of the SMAP (Soil Moisture Active Passive) mission are global measurements of soil mo...
Soil moisture (SM) applications in terrestrial hydrology require higher spatial resolution soil mois...
Soil moisture (SM) applications in terrestrial hydrology require higher spatial resolution soil mois...
Since the beginning of its routine science operation in March 2015, the NASA SMAP observatory has be...
The NASA SMAP (Soil Moisture Active Passive) mission provides a global coverage of soil moisture mea...
Soil moisture (SM) with a high spatial resolution plays a paramount role in many local and regional ...
Remotely sensed soil moisture retrieved by the Soil Moisture Active and Passive (SMAP) sensor is cur...
The SMAP (Soil Moisture Active Passive) mission provides global surface soil moisture product at 36 ...
Remotely sensed soil moisture retrieved by the Soil Moisture Active and Passive (SMAP) sensor is cur...
In the past decade, a variety of algorithms have been introduced to downscale passive microwave soil...
The Soil Moisture Active Passive (SMAP) mission provides a global surface soil moisture (SM) product...
Improving the spatial resolution of microwave satellite soil moisture (SM) products is important for...
NASA's Soil Moisture Active Passive (SMAP) mission launched on January 31, 2015 into a sun-synchrono...
Improving the spatial resolution of microwave satellite soil moisture (SM) products is important for...
Soil moisture (SM) applications in terrestrial hydrology require higher spatial resolution soil mois...
The objectives of the SMAP (Soil Moisture Active Passive) mission are global measurements of soil mo...
Soil moisture (SM) applications in terrestrial hydrology require higher spatial resolution soil mois...
Soil moisture (SM) applications in terrestrial hydrology require higher spatial resolution soil mois...
Since the beginning of its routine science operation in March 2015, the NASA SMAP observatory has be...
The NASA SMAP (Soil Moisture Active Passive) mission provides a global coverage of soil moisture mea...
Soil moisture (SM) with a high spatial resolution plays a paramount role in many local and regional ...