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Volumn 51, Issue 3, 2007, Pages 501-518

Land use classification based on the intensity value of the reflected laser beam;Klasifikacija rabe površin iz vrednosti intenzitete odbitega laserskega žarka

Author keywords

Airborne laser scanning; Classification; Intensity; Land use; Normalization

Indexed keywords

AIRBORNE SENSING; IDENTIFICATION METHOD; IMAGE ANALYSIS; IMAGE CLASSIFICATION; LAND USE; PATTERN RECOGNITION;

EID: 51649100564     PISSN: 03510271     EISSN: None     Source Type: Journal    
DOI: None     Document Type: Article
Times cited : (2)

References (12)
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    • Jonas, D. (2002). Airborne laser scanning: Developments in intensity and beam divergence. AAM GeoScan Australia http://www.aamhatch.com.au/ resources/pdf/publications/technical_papers/11arspc_jonas.pdf (9. 12. 2006)
    • Jonas, D. (2002). Airborne laser scanning: Developments in intensity and beam divergence. AAM GeoScan Australia http://www.aamhatch.com.au/ resources/pdf/publications/technical_papers/11arspc_jonas.pdf (9. 12. 2006)
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    • Intensity. Technical note. TopoSys GmbH Ravensburg
    • Katzenbeisser, R. (2002,). Intensity. Technical note. TopoSys GmbH Ravensburg. http://www.toposys.com/pdf-ext/Engl/TN-Intensity.pdf (8. 12. 2006)
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  • 8
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    • Lutz, E., Geist, T., Stötter, J. (2003). Investigations of airborne laser scanning signal intensity on glacial surfaces-utilizing comprehensive laser geometry modelling and orthophoto surface modelling (a case study: Svartisheibreen, Norway). In: IAPRS, 34(3/W 13), Dresden: 143-148. http://www.isprs.org/commission3/wg3/workshop_laserscanning/ papers/Lutz_ALSDD2003.pdf (9. 12. 2006)
    • Lutz, E., Geist, T., Stötter, J. (2003). Investigations of airborne laser scanning signal intensity on glacial surfaces-utilizing comprehensive laser geometry modelling and orthophoto surface modelling (a case study: Svartisheibreen, Norway). In: IAPRS, 34(3/W 13), Dresden: 143-148. http://www.isprs.org/commission3/wg3/workshop_laserscanning/ papers/Lutz_ALSDD2003.pdf (9. 12. 2006)
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    • Hasegawa, H. (2006). Evaluations of LIDAR reflectance amplitude sensitivity towards land cover conditions. http://www.gsi.go.jp/ENGLISH/ RESEARCH/BULLETIN/53/53-6.pdf (8. 12; 2006)
    • Hasegawa, H. (2006). Evaluations of LIDAR reflectance amplitude sensitivity towards land cover conditions. http://www.gsi.go.jp/ENGLISH/ RESEARCH/BULLETIN/vol-53/53-6.pdf (8. 12; 2006)
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    • Song, J.H., Han, S.H., Yu, K., Kim Y. (2002). Assessing the Possibility of Land-cover Classification Using Lidar Intensity Data. IAPRS 34, 4. Graz, 9.-13. September.
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    • Wagner, W. (2005). Physical Principles of Airborne Laser Scanning. Paper from University Course: Laser scanning - Data Acquisiton and Modeling. Institute of photogrammetry and remote sensing, TU Vienna, 6. 10.-7. 10. 2005.


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.