Title :
Active and passive L-band microwave remote sensing for soil moisture — A test-bed for SMAP fusion algorithms
Author :
Montzka, C. ; Bogena, H. ; Jagdhuber, T. ; Hajnsek, I. ; Horn, R. ; Reigber, A. ; Hasan, S. ; Rudiger, C. ; Jaeger, M. ; Vereecken, H.
Author_Institution :
Inst. of Bio- & Geosci.: Agrosphere (IBG 3), Res. Centre Julich, Julich, Germany
Abstract :
The objective of the NASA Soil Moisture Active & Passive (SMAP) mission is to provide global measurements of soil moisture and its freeze/thaw state. The SMAP measurement approach is to integrate L-band radar and radiometer as a single observation system combining the respective strengths of active and passive remote sensing for enhanced soil moisture mapping. Airborne instruments will be a key part of the SMAP validation program. Here, we present an airborne campaign in the Rur catchment, Germany, in which the passive L-band system Polarimetric L-band Multi-beam Radiometer (PLMR2) and the active L-band system DLR F-SAR were flown on six dates in 2013. The flights covered the full heterogeneity of the area under investigation, i.e. all types of land cover and experimental monitoring sites. The obtained data sets are used as a test-bed for the analysis of existing and development of new active-passive fusion techniques.
Keywords :
freezing; geophysical techniques; land cover; melting; radiometers; remote sensing; soil; synthetic aperture radar; AD 2013; Germany; L-band radar; L-band radiometer; NASA SMAP mission; NASA Soil Moisture Active and Passive mission; PLMR2; Rur catchment; SMAP fusion algorithm test-bed; SMAP validation program; active L-band microwave remote sensing; active L-band system DLR F-SAR; active remote sensing strength; active-passive fusion technique analysis; active-passive fusion technique development; airborne campaign; airborne instrument; enhanced soil moisture mapping; experimental monitoring site; full area heterogeneity; global soil freeze-thaw state measurement; global soil moisture measurement; land cover type; passive L-band microwave remote sensing; passive L-band system Polarimetric L-band Multi-beam Radiometer; passive remote sensing strength; single observation system; soil moisture; test-bed data set; L-band; Microwave radiometry; Radar; Remote sensing; Soil measurements; Soil moisture; Airborne; Fusion Algorithms; Microwave Remote Sensing; SMAP; Soil Moisture;
Conference_Titel :
Geoscience and Remote Sensing Symposium (IGARSS), 2014 IEEE International
Conference_Location :
Quebec City, QC
DOI :
10.1109/IGARSS.2014.6946962