• DocumentCode
    1187917
  • Title

    Landsat-7 ETM+ on-orbit reflective-band radiometric characterization

  • Author

    Scaramuzza, Pat L. ; Markham, Brian L. ; Barsi, Julia A. ; Kaita, Ed

  • Author_Institution
    Sci. Applic. Int. Corp., San Diego, USA
  • Volume
    42
  • Issue
    12
  • fYear
    2004
  • Firstpage
    2796
  • Lastpage
    2809
  • Abstract
    The Landsat-7 Enhanced Thematic Mapper Plus (ETM+) has been and continues to be radiometrically characterized using the Image Assessment System (IAS), a component of the Landsat-7 Ground System. Key radiometric properties analyzed include: overall, coherent, and impulse noise; bias stability; relative gain stability; and other artifacts. The overall instrument noise is characterized across the dynamic range of the instrument during solar diffuser deployments. Less than 1% per year increases are observed in signal-independent (dark) noise levels, while signal-dependent noise is stable with time. Several coherent noise sources exist in ETM+ data with scene-averaged magnitudes of up to 0.4 DN, and a noise component at 20 kHz whose magnitude varies across the scan and peaks at the image edges. Bit-flip noise does not exist on the ETM+. However, impulse noise due to charged particle hits on the detector array has been discovered. The instrument bias is measured every scan line using a shutter. Most bands show less than 0.1 DN variations in bias across the instrument lifetime. The panchromatic band is the exception, where the variation approaches 2 DN and is related primarily to temperature. The relative gains of the detectors, i.e., each detector\´s gain relative to the band average gain, have been stable to ±0.1% over the mission life. Two exceptions to this stability include band 2 detector 2, which dropped about 1% in gain about 3.5 years after launch and stabilized, and band 7 detector 5, which has changed several tenths of a percent several times since launch. Memory effect and scan-correlated shift, a hysteresis and a random change in bias between multiple states, respectively, both of which have been observed in previous Thematic Mapper sensors, have not been convincingly found in ETM+ data. Two artifacts, detector ringing and "oversaturation", affect a small amount of ETM+ data.
  • Keywords
    geophysical equipment; radiometry; vegetation mapping; Enhanced Thematic Mapper Plus; Landsat-7 ETM+; Thematic Mapper sensor; bias stability; bit-flip noise; coherent noise sources; detector array; detector ringing; ground system; hysteresis; image assessment system; image edges; impulse noise; instrument noise; memory effect; on-orbit radiometric characterization; overall noise; oversaturation; panchromatic band; radiometric property; radiometry; reflective-band radiometric characterization; relative gain stability; scan-correlated shift; scene-averaged magnitudes; shutter; signal-dependent noise; signal-independent noise; solar diffuser; Detectors; Dynamic range; Image edge detection; Instruments; Noise level; Radiometry; Remote sensing; Satellites; Sensor arrays; Stability analysis;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0196-2892
  • Type

    jour

  • DOI
    10.1109/TGRS.2004.839083
  • Filename
    1369376