ON GROUND SURFACE EXTRACTION USING FULL-WAVEFORM AIRBORNE LASER SCANNER FOR CIM

Satellite positioning systems such as GPS and GLONASS have created significant changes not only in terms of spatial information but also in the construction industry. It is possible to execute a suitable construction plan by using a computerized intelligent construction. Therefore, an accurate estim...

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Main Authors: K. Nakano, H. Chikatsu
Format: Article
Language:English
Published: Copernicus Publications 2015-05-01
Series:The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
Online Access:http://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XL-4-W5/159/2015/isprsarchives-XL-4-W5-159-2015.pdf
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author K. Nakano
H. Chikatsu
author_facet K. Nakano
H. Chikatsu
author_sort K. Nakano
collection DOAJ
description Satellite positioning systems such as GPS and GLONASS have created significant changes not only in terms of spatial information but also in the construction industry. It is possible to execute a suitable construction plan by using a computerized intelligent construction. Therefore, an accurate estimate of the amount of earthwork is important for operating heavy equipment, and measurement of ground surface with high accuracy is required. A full-waveform airborne laser scanner is expected to be capable of improving the accuracy of ground surface extraction for forested areas, in contrast to discrete airborne laser scanners, as technological innovation. For forested areas, fundamental studies for construction information management (CIM) were conducted to extract ground surface using full-waveform airborne laser scanners based on waveform information.
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spelling doaj.art-88f594e2d01641a5a82c7844a25bf8872022-12-21T19:03:40ZengCopernicus PublicationsThe International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences1682-17502194-90342015-05-01XL-4/W515916310.5194/isprsarchives-XL-4-W5-159-2015ON GROUND SURFACE EXTRACTION USING FULL-WAVEFORM AIRBORNE LASER SCANNER FOR CIMK. Nakano0H. Chikatsu1Research and Development Center, AERO ASAHI CORPORATION, 3-1-1, Minamidai, Kawagoe, Saitama, 350-1165, JapanDivision of Architectural, Civil and Environmental Engineering, Tokyo Denki University, Ishizaka, Hatoyama, Saitama, 350-0394, JapanSatellite positioning systems such as GPS and GLONASS have created significant changes not only in terms of spatial information but also in the construction industry. It is possible to execute a suitable construction plan by using a computerized intelligent construction. Therefore, an accurate estimate of the amount of earthwork is important for operating heavy equipment, and measurement of ground surface with high accuracy is required. A full-waveform airborne laser scanner is expected to be capable of improving the accuracy of ground surface extraction for forested areas, in contrast to discrete airborne laser scanners, as technological innovation. For forested areas, fundamental studies for construction information management (CIM) were conducted to extract ground surface using full-waveform airborne laser scanners based on waveform information.http://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XL-4-W5/159/2015/isprsarchives-XL-4-W5-159-2015.pdf
spellingShingle K. Nakano
H. Chikatsu
ON GROUND SURFACE EXTRACTION USING FULL-WAVEFORM AIRBORNE LASER SCANNER FOR CIM
The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
title ON GROUND SURFACE EXTRACTION USING FULL-WAVEFORM AIRBORNE LASER SCANNER FOR CIM
title_full ON GROUND SURFACE EXTRACTION USING FULL-WAVEFORM AIRBORNE LASER SCANNER FOR CIM
title_fullStr ON GROUND SURFACE EXTRACTION USING FULL-WAVEFORM AIRBORNE LASER SCANNER FOR CIM
title_full_unstemmed ON GROUND SURFACE EXTRACTION USING FULL-WAVEFORM AIRBORNE LASER SCANNER FOR CIM
title_short ON GROUND SURFACE EXTRACTION USING FULL-WAVEFORM AIRBORNE LASER SCANNER FOR CIM
title_sort on ground surface extraction using full waveform airborne laser scanner for cim
url http://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XL-4-W5/159/2015/isprsarchives-XL-4-W5-159-2015.pdf
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