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SATELLITE IMAGERY APPLIED TO MAPPING OF THE EROSION MICRORELIEF STRUCTURES

Panidi, Evgeny, Sokolova, Julia, Trofimetz, Lubov, Kunaeva, Elena

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b23/s11.053View metrics

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Title
SATELLITE IMAGERY APPLIED TO MAPPING OF THE EROSION MICRORELIEF STRUCTURES
Authors
Panidi, Evgeny, Sokolova, Julia, Trofimetz, Lubov, Kunaeva, Elena
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 16th International Multidisciplinary Scientific GeoConference SGEM2016, Informatics, Geoinformatics and Remote Sensing
Publisher
Stef92 Technology
Year
2016
Pages
415-422
ISSN
1314-2704
ISBN
978-619-7105-60-5
Language
en
Publication type
Conference Paper
References24
  1. Cheng P., Chaapel C. Using WorldView-1 Stereo Data with or without Ground Control Automatic DEM Generation. Geoinformatics, Volume 11, No. 7, 2008, pp. 34- 37.

  2. Baskakov S. Highly accurate relief modeling for designing of Kundyzdy and Limannoe mines infrastructure based on remote sensing. Geomatics, Volume 2(19), 2013, pp. 80-86 (in Russian).

  3. Costa-Cabral M.C., Burges S.J. Digital Elevation Model Networks (DEMON): A model of flow over hillslopes for computation of contributing and dispersal areas. Water Resources Research, Volume 30, Issue 6, 1994 pp. 1681–1692. DOI: 10.1029/93WR03512

  4. DigitalGlobe. Digital Terrain Model Extraction using WorldView-2 Stereo and ERDAS LPS Automated Terrain Extraction. Available at http://global.digitalglobe.com/sites/default/files/DEM_extraction_from_OR2A_Stereo_ and_ERDAS_LPS.pdf

  5. DigitalGlobe. Data Sheet. Standard Imagery. Available at http://global.digitalglobe.com/sites/default/files/StandardImagery_DS_10- 14_forWeb.pdf

  6. Evans L.S. General geomorfometry, derivatives of altitude, and descriptive statistics. In: Chorley R.J. (ed.), Spatial Analysis in Geomorfology, London, Methuen & Co. Ltd., Chapter 2, 1972. pp. 17-90.

  7. Mitchell G. Digital terrain models generated by satellite stereo imagery and laser scanning data: comparative analysis. Geomatics, Volume 4(9), 2010, pp. 54-57 (in Russian).

  8. Panidi E., Sokolova J., Trofimetz L., Kunaeva E. Mapping of the microrelief structures using multitemporal very high resolution space imagery. Proceedings of the International Scientific Conference Geobalcanica 2016, 2016, 7 p. (submitted for publication)

  9. Panidi E., Trofimetz L., Sokolova J. A study of indicative methods applied to microrelief mapping. International Symposium on Digital Earth, October 5-9, 2015, Halifax, Nova Scotia, Canada, Abstract Volume, 2015, p. 15.

  10. Poli D., Caravaggi I. Digital surface modelling and 3D information extraction from spaceborne very high resolution stereo pairs. 2012, 31 p. DOI: 10.2788/15526

  11. Saldaña M.M., Aguilar M.A., Aguilar F.J., Fernánd ez I. DSM Extraction and Evaluation from Geoeye-1 Stereo Imagery. ISPRS Annals of the Photogrammetry, 16th International Multidisciplinary Scientific GeoConference SGEM 2016 Remote Sensing and Spatial Information Sciences, Volume I-4, 2012, pp. 113-118. DOI: 10.5194/isprsannals-I-4-113-2012

  12. Trofimetz L., Panidi E. Study of soil loss quantity on the arable territories using estimations of soil pollutants migration and geomorphometric parameters of the microrelief. SGEM2015 Conference Proceedings, Book 3, Volume 2, 2015, pp. 341-348. DOI: 10.5593/SGEM2015/B32/S13.046

  13. Cheng P., Chaapel C. Using WorldView-1 Stereo Data with or without Ground Control Automatic DEM Generation. Geoinformatics, Volume 11, No. 7, 2008, pp. 34- 37.

  14. Baskakov S. Highly accurate relief modeling for designing of Kundyzdy and Limannoe mines infrastructure based on remote sensing. Geomatics, Volume 2(19), 2013, pp. 80-86 (in Russian).

  15. Costa-Cabral M.C., Burges S.J. Digital Elevation Model Networks (DEMON): A model of flow over hillslopes for computation of contributing and dispersal areas. Water Resources Research, Volume 30, Issue 6, 1994 pp. 1681–1692. DOI: 10.1029/93WR03512

  16. DigitalGlobe. Digital Terrain Model Extraction using WorldView-2 Stereo and ERDAS LPS Automated Terrain Extraction. Available at http://global.digitalglobe.com/sites/default/files/DEM_extraction_from_OR2A_Stereo_ and_ERDAS_LPS.pdf

  17. DigitalGlobe. Data Sheet. Standard Imagery. Available at http://global.digitalglobe.com/sites/default/files/StandardImagery_DS_10- 14_forWeb.pdf

  18. Evans L.S. General geomorfometry, derivatives of altitude, and descriptive statistics. In: Chorley R.J. (ed.), Spatial Analysis in Geomorfology, London, Methuen & Co. Ltd., Chapter 2, 1972. pp. 17-90.

  19. Mitchell G. Digital terrain models generated by satellite stereo imagery and laser scanning data: comparative analysis. Geomatics, Volume 4(9), 2010, pp. 54-57 (in Russian).

  20. Panidi E., Sokolova J., Trofimetz L., Kunaeva E. Mapping of the microrelief structures using multitemporal very high resolution space imagery. Proceedings of the International Scientific Conference Geobalcanica 2016, 2016, 7 p. (submitted for publication)

  21. Panidi E., Trofimetz L., Sokolova J. A study of indicative methods applied to microrelief mapping. International Symposium on Digital Earth, October 5-9, 2015, Halifax, Nova Scotia, Canada, Abstract Volume, 2015, p. 15.

  22. Poli D., Caravaggi I. Digital surface modelling and 3D information extraction from spaceborne very high resolution stereo pairs. 2012, 31 p. DOI: 10.2788/15526

  23. Saldaña M.M., Aguilar M.A., Aguilar F.J., Fernánd ez I. DSM Extraction and Evaluation from Geoeye-1 Stereo Imagery. ISPRS Annals of the Photogrammetry, 16th International Multidisciplinary Scientific GeoConference SGEM 2016 Remote Sensing and Spatial Information Sciences, Volume I-4, 2012, pp. 113-118. DOI: 10.5194/isprsannals-I-4-113-2012

  24. Trofimetz L., Panidi E. Study of soil loss quantity on the arable territories using estimations of soil pollutants migration and geomorphometric parameters of the microrelief. SGEM2015 Conference Proceedings, Book 3, Volume 2, 2015, pp. 341-348. DOI: 10.5593/SGEM2015/B32/S13.046

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