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GISdevelopment > Proceedings > ACRS > 1999


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Poster Sessions
  • Session 1
  • Session 2
  • Session 3
  • Session 4
  • Session 5
  • Session 6



  • ACRS 1999


    Poster Session 3
    The Characterization of Ground Control Point Distribution Patterns for the Performance Assessment of Camera Models

    5.Conclusions
    This paper shows the performance of two different camera models with respect not only to the final accuracy but also to the number of GCPs required and their spatial distributions. The two camera models showed different characteristics according to the GCPs applied for modeling. It was also shown that as a camera model was implemented close to a physical model, it can achieve accurate results by using smaller number of GCPs. In addition, it not sensitive to the distribution patters of GCPs.

    References
    • Chang, D., J.Liu, Y. Jiang and H Li, 1990. Geometric correction with photographic model for satellite remote sensing images. SPIE Digital Image Processing and Visual communications Technologies in the Earth and Atmospheric Sciences, Vo. 1301,pp. 162-170.
    • Moreno, J.F., 1993. A method for accurate geometric correction of NOAA AVHRR HRPT data. IEEE TGARS, 31 (1), pp. 204-226.
    • Salamonowicz, P.H., 1986. Satellite orientation and position for geometric correction of scanner imagery, PE&RS, 52 (4), pp. 461-499.
    • Shin, D. and Y.R. Lee, 1997. Geometric modeling and coordinate transformation of satellite-based linear pushbroom-type CCD camera images. J. Korean Society of Remote Sensing, 13(2), pp. 85-98. (written in Korean)
    • Shin, D., Y.R. Lee and H.K. Lee, 1998, Precision correction of satellite-based linear pushbroom-type CCD camera images, J. Korean Society of Remote Sensing, 14(2), pp. 137-148. (written in Korean)
    • Shin, D. and Y.R. Lee, 1998. Performance analysis on the geometric correction algorithms using GCPs - polynomial warping and full camera modeling. Processing of International Symposium of Remoe Sensing, Kwangju, Korea, pp. 252-256.
    • Toutin, T., 1993. Analyse mathematique des possibilities cartographique du satellite SPOT, Memoire du diplome d'Etudes Aprofondies, Ecole Nationale des Sciences Geodesiques, Saint-Mande, France, p. 74.
    • Toutin, T., 1995. Multi-source data fusion with an integrated and unified geometric modeling, EARSel Journal Advances in Remote Sensing, 4(2), pp. 118-129.
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