Title :
SSTL UK-DMC SLIM-6 Data Quality Assessment
Author :
Chander, Gyanesh ; Saunier, Sebastien ; Choate, Michael J. ; Scaramuzza, Pasquale L.
Author_Institution :
Stinger Ghaffarian Technol. (SGT), Inc., Sioux Falls, SD
fDate :
7/1/2009 12:00:00 AM
Abstract :
Satellite data from the Surrey Satellite Technology Limited (SSTL) United Kingdom (UK) Disaster Monitoring Constellation (DMC) were assessed for geometric and radiometric quality. The UK-DMC Surrey Linear Imager 6 (SLIM-6) sensor has a 32-m spatial resolution and a ground swath width of 640 km. The UK-DMC SLIM-6 design consists of a three-band imager with green, red, and near-infrared bands that are set to similar bandpass as Landsat bands 2, 3, and 4. The UK-DMC data consisted of imagery registered to Landsat orthorectified imagery produced from the GeoCover program. Relief displacements within the UK-DMC SLIM-6 imagery were accounted for by using global 1-km digital elevation models available through the Global Land One-km Base Elevation (GLOBE) Project. Positional accuracy and relative band-to-band accuracy were measured. Positional accuracy of the UK-DMC SLIM-6 imagery was assessed by measuring the imagery against digital orthophoto quadrangles (DOQs), which are designed to meet national map accuracy standards at 1 : 24 000 scales; this corresponds to a horizontal root-mean-square accuracy of about 6 m. The UK-DMC SLIM-6 images were typically registered to within 1.0-1.5 pixels to the DOQ mosaic images. Several radiometric artifacts like striping, coherent noise, and flat detector were discovered and studied. Indications are that the SSTL UK-DMC SLIM-6 data have few artifacts and calibration challenges, and these can be adjusted or corrected via calibration and processing algorithms. The cross-calibration of the UK-DMC SLIM-6 and Landsat 7 Enhanced Thematic Mapper Plus was performed using image statistics derived from large common areas observed by the two sensors.
Keywords :
digital elevation models; geophysics computing; image registration; image segmentation; remote sensing; GLOBE Project; GeoCover program; Global Land One-km Base Elevation Project; Landsat 7 Enhanced Thematic Mapper Plus; Landsat orthorectified imagery; SSTL UK-DMC SLIM-6 data quality assessment; Surrey Satellite Technology Limited; UK-DMC Surrey Linear Imager 6; United Kingdom Disaster Monitoring Constellation; calibration-processing algorithms; coherent noise; digital elevation models; digital orthophoto quadrangles mosaic images; flat detector; image statistics; imagery registration; positional accuracy; radiometric artifacts; relative band-to-band accuracy; relief displacements; root-mean-square accuracy; striping; three-band imager; Calibration; Enhanced Thematic Mapper Plus ($hbox{ETM}+$); Landsat; Surrey Linear Imager 6 (SLIM-6); Surrey Satellite Technology Limited (SSTL); United Kingdom (UK) Disaster Monitoring Constellation (DMC); characterization; geometry; radiometry; relative spectral response (RSR); spectral bands;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2009.2013206