• DocumentCode
    1068475
  • Title

    An Assessment of QuikSCAT Ku-Band Scatterometer Data for Soil Moisture Sensitivity

  • Author

    Mladenova, Iliana ; Lakshmi, Venkat ; Walker, Jeffrey P. ; Long, David G. ; Jeu, Richard De

  • Author_Institution
    Dept. of Geol. Sci., Univ. of South Carolina, Columbia, SC, USA
  • Volume
    6
  • Issue
    4
  • fYear
    2009
  • Firstpage
    640
  • Lastpage
    643
  • Abstract
    The QuikSCAT enhanced (2.225-km) backscattering product is investigated for sensitivity to changes in soil moisture and its potential for spatial disaggregation of Advanced Microwave Scanning Radiometer (AMSR-E) soil moisture. Specifically, an active-passive methodology based on temporal change detection is tested using data from the 2006 National Airborne Field Experiment data set. This campaign was carried out from October 29 to November 20, 2006 in a 60 km times 40 km area of the Murrumbidgee catchment, southeast Australia. Temporal change detection analysis and accuracy in terms of spatial pattern distribution throughout the domain were assessed using a passive microwave airborne product derived from the Polarimetric L-band Multibeam Radiometer at 1-km spatial resolution. QuikSCAT-AMSR-E intercomparisons indicated higher correlations when using C-band observations. The greatest sensitivity to soil moisture was observed when using V-polarized backscatter measurement. While backscattering data showed adequate temporal sensitivity to changes in soil moisture due to precipitation events, the spatial agreement was complicated by the presence of irrigation and standing water (rice fields). This resulted in low Cramer´s Phi values (less than 0.06), which were used as a measure of spatial correspondence in terms of change in soil moisture and backscatter. In addition, the high QuikSCAT sensor frequency and existence of noise in the observed data contributed to the observed discrepancies.
  • Keywords
    hydrological techniques; moisture; radiometry; remote sensing; soil; AD 2006 10 29 to 11 20; AMSR-E soil moisture; Advanced Microwave Scanning Radiometer; Murrumbidgee catchment; NAFE data set; National Airborne Field Experiment; Polarimetric L-band Multibeam Radiometer; QuikSCAT Ku-band scatterometer data assessment; QuikSCAT enhanced backscattering product; QuikSCAT sensor frequency; active-passive methodology; passive microwave airborne product; soil moisture change; soil moisture sensitivity; southeast Australia; spatial pattern distribution; temporal change detection analysis; Advanced Microwave Scanning Radiometer (AMSR-E); National Airborne Field Experiment 2006 (NAFE´06); QuikSCAT; soil moisture; temporal change detection;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1545-598X
  • Type

    jour

  • DOI
    10.1109/LGRS.2009.2021492
  • Filename
    5071208