STUDY ON ACCURACY OF BUILDING HEIGHT MEASUREMENT FROM SINGLE QUICKBIRD SATELLITE IMAGE FOR FORMING 3D CITY MODEL

ABSTRACT: <br /> <br /> <br /> <br /> <br /> Building height measurement needed to anticipates many high rise developments in urban area. PBB can apply result of building height measurement as reference of field verification activity and as data for forming 3d city...

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Main Author: Purwanto (NIM 25105030), Andi
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/7196
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:7196
spelling id-itb.:71962017-10-09T10:15:53ZSTUDY ON ACCURACY OF BUILDING HEIGHT MEASUREMENT FROM SINGLE QUICKBIRD SATELLITE IMAGE FOR FORMING 3D CITY MODEL Purwanto (NIM 25105030), Andi Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/7196 ABSTRACT: <br /> <br /> <br /> <br /> <br /> Building height measurement needed to anticipates many high rise developments in urban area. PBB can apply result of building height measurement as reference of field verification activity and as data for forming 3d city model of PBB. PBB routinely purchase satellite image for updating of map PBB. These satellite images can also exploited for building height measurement. Building height measurement is done at single QuickBird satellite image with two methods that is direct measurement at building object in image by exploiting Rational Function Model (RFM) and through building shadow measurement of length. Research done to study accuracy of building height measurement from single QuickBird satellite image and determines best building height measurement method. Besides, this research also done to make three dimensions city model formed from building height data and length/wide building at single QuickBird satellite image. <br /> <br /> <br /> <br /> <br /> Building height measurement is done using SilverEye, software which can exploit Rational Polynomial Coefficient (RPC) QuickBird satellite image metadata. Direct building height measurement yields value RMSe 1,108 meter. Accuracy of building height measurement through building shadow length measurement is lower, with value RMSe 3,239 meter. Determinations of measurement point have a high influence in result of building altimetry. At building height measurement through length shadow measurement many influenced by something else like surface difference of tip of shadow and building base point and tip of shadow stays at other object. <br /> <br /> <br /> <br /> <br /> Building height measurement from single QuickBird satellite image hardly depend on existence of satellite image RPC metadata and there is building blocked by other building. But for building height measurement, this method is just requires single satellite image, practice, easy, and quick. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description ABSTRACT: <br /> <br /> <br /> <br /> <br /> Building height measurement needed to anticipates many high rise developments in urban area. PBB can apply result of building height measurement as reference of field verification activity and as data for forming 3d city model of PBB. PBB routinely purchase satellite image for updating of map PBB. These satellite images can also exploited for building height measurement. Building height measurement is done at single QuickBird satellite image with two methods that is direct measurement at building object in image by exploiting Rational Function Model (RFM) and through building shadow measurement of length. Research done to study accuracy of building height measurement from single QuickBird satellite image and determines best building height measurement method. Besides, this research also done to make three dimensions city model formed from building height data and length/wide building at single QuickBird satellite image. <br /> <br /> <br /> <br /> <br /> Building height measurement is done using SilverEye, software which can exploit Rational Polynomial Coefficient (RPC) QuickBird satellite image metadata. Direct building height measurement yields value RMSe 1,108 meter. Accuracy of building height measurement through building shadow length measurement is lower, with value RMSe 3,239 meter. Determinations of measurement point have a high influence in result of building altimetry. At building height measurement through length shadow measurement many influenced by something else like surface difference of tip of shadow and building base point and tip of shadow stays at other object. <br /> <br /> <br /> <br /> <br /> Building height measurement from single QuickBird satellite image hardly depend on existence of satellite image RPC metadata and there is building blocked by other building. But for building height measurement, this method is just requires single satellite image, practice, easy, and quick.
format Theses
author Purwanto (NIM 25105030), Andi
spellingShingle Purwanto (NIM 25105030), Andi
STUDY ON ACCURACY OF BUILDING HEIGHT MEASUREMENT FROM SINGLE QUICKBIRD SATELLITE IMAGE FOR FORMING 3D CITY MODEL
author_facet Purwanto (NIM 25105030), Andi
author_sort Purwanto (NIM 25105030), Andi
title STUDY ON ACCURACY OF BUILDING HEIGHT MEASUREMENT FROM SINGLE QUICKBIRD SATELLITE IMAGE FOR FORMING 3D CITY MODEL
title_short STUDY ON ACCURACY OF BUILDING HEIGHT MEASUREMENT FROM SINGLE QUICKBIRD SATELLITE IMAGE FOR FORMING 3D CITY MODEL
title_full STUDY ON ACCURACY OF BUILDING HEIGHT MEASUREMENT FROM SINGLE QUICKBIRD SATELLITE IMAGE FOR FORMING 3D CITY MODEL
title_fullStr STUDY ON ACCURACY OF BUILDING HEIGHT MEASUREMENT FROM SINGLE QUICKBIRD SATELLITE IMAGE FOR FORMING 3D CITY MODEL
title_full_unstemmed STUDY ON ACCURACY OF BUILDING HEIGHT MEASUREMENT FROM SINGLE QUICKBIRD SATELLITE IMAGE FOR FORMING 3D CITY MODEL
title_sort study on accuracy of building height measurement from single quickbird satellite image for forming 3d city model
url https://digilib.itb.ac.id/gdl/view/7196
_version_ 1820664083301531648