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Systems for data processing, anaylsis and representation

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CC BY: Attribution 4.0 International. You can find more information here.

Bibliographic data

fullscreen: Systems for data processing, anaylsis and representation

Monograph

Persistent identifier:
1067490280
Title:
Systems for data processing, anaylsis and representation
Sub title:
ISPRS Commission II Symposium : June 6 - 10, Ottawa, Canada
Scope:
1 Online-Ressource (XX, 530 Seiten)
Year of publication:
1994
Place of publication:
Ottawa
Publisher of the original:
The Surveys, Mapping and Remote Sensing, Natural Resources Canada
Identifier (digital):
1067490280
Illustration:
Illustrationen
Signature of the source:
ZS 312(30,2)
Language:
English
Additional Notes:
Erscheinungsdatum des Originals ist aus dem Copyrightjahr ermittelt.
Usage licence:
Attribution 4.0 International (CC BY 4.0)
Editor:
Allam, Mosaad
Plunkett, Gordon
Corporations:
Symposium Systems for Data Processing, Analysis and Representation, 1994, Ottawa
International Society for Photogrammetry and Remote Sensing
International Society for Photogrammetry and Remote Sensing, Commission Instrumentation for Data Reduction and Analysis
Kanada, Surveys, Mapping and Remote Sensing Sector
Adapter:
Symposium Systems for Data Processing, Analysis and Representation, 1994, Ottawa
International Society for Photogrammetry and Remote Sensing
International Society for Photogrammetry and Remote Sensing, Commission Instrumentation for Data Reduction and Analysis
Kanada, Surveys, Mapping and Remote Sensing Sector
Founder of work:
Symposium Systems for Data Processing, Analysis and Representation, 1994, Ottawa
International Society for Photogrammetry and Remote Sensing
International Society for Photogrammetry and Remote Sensing, Commission Instrumentation for Data Reduction and Analysis
Kanada, Surveys, Mapping and Remote Sensing Sector
Other corporate:
Symposium Systems for Data Processing, Analysis and Representation, 1994, Ottawa
International Society for Photogrammetry and Remote Sensing
International Society for Photogrammetry and Remote Sensing, Commission Instrumentation for Data Reduction and Analysis
Kanada, Surveys, Mapping and Remote Sensing Sector
Publisher of the digital copy:
Technische Informationsbibliothek Hannover
Place of publication of the digital copy:
Hannover
Year of publication of the original:
2019
Document type:
Monograph
Collection:
Earth sciences

Chapter

Title:
[Monday, June 6, 1994]
Document type:
Monograph
Structure type:
Chapter

Chapter

Title:
[Joint ISPRS/GIS '94 Plenary I]
Document type:
Monograph
Structure type:
Chapter

Chapter

Title:
SYNERGY OF PHOTOGRAMMETRY, REMOTE SENSING AND GIS Dieter Fritsch
Document type:
Monograph
Structure type:
Chapter

Contents

Table of contents

  • Systems for data processing, anaylsis and representation
  • Cover
  • ColorChart
  • Title page
  • Preface
  • ISPRS TECHNICAL COMMITTEE
  • Commission II Terms of Reference and Working Groups
  • TABLE OF CONTENTS
  • TABLE DES MATIÈRES
  • [Monday, June 6, 1994]
  • [Joint ISPRS/GIS '94 Plenary I]
  • APPLICATIONS OF GIS IN THE ENVIRONMENT Merv Swan
  • Applications environnementales des SIG Merv Swan
  • SYNERGY OF PHOTOGRAMMETRY, REMOTE SENSING AND GIS Dieter Fritsch
  • La synergie photogrammétrie - télédétection - SIG [Dieter Fritsch]
  • [Session A-1 WG II/4 - Systems for the Processing of Radar Data - Part A]
  • [Session B-1 WG II/3 - Technologies for Large Volumes of Spatial Data - Part A]
  • [Tuesday, June 7, 1994]
  • [Joint ISPRS/GIS '94 Plenary II]
  • [Session C-1 WG II/1 - Real-Time Mapping Technologies - Applications]
  • [Session D-1 Commission II - Special Project - Upgrading Photogrammetric Instruments]
  • [Session D-2 WG II/2 - Hardware and Software Aspects of GIS - Part A]
  • [Session E-1 Intercommission WG II/III- Digital Photogrammetric Systems - Part A]
  • [Wednesday, June 8, 1994]
  • [Joint ISPRS/ GIS '94 Plenary III]
  • [Session F-1 WG II/1 - Real-Time Mapping Technologies - Automatic Orientation of Sensors]
  • [Session F-2 WG II/3 - Technologies for Large-Volumes of Spatial Data - Part B]
  • [Session G-1 WG II/1 - Real-Time Mapping Technologies - Sensor Integration]
  • [Session G-2 WG II/5 - Integrated Production Systems]
  • [Poster Session 2-A]
  • [Thursday, June 9, 1994]
  • [Joint ISPRS/GIS '94 Plenary IV]
  • [Session I-I WG II/3 - Technologies for Large Volumes of Spatial Data - Part C]
  • [Session J-1 WG II/2 - Hardware and Software Aspects of GIS - Part B]
  • [Session J-2 Intercommission WG II/III - Digital Photogrammetric Systems - Part B]
  • [Poster Session 3-A]
  • [Session K-1 WG II/4 - Systems for the Processing of Radar Data - Part B]
  • [Friday, June 10, 1994]
  • [Session L-1 WG II/1 - Real-Time Mapping Technologies - Algorithmic Aspects]
  • [Joint ISPRS/GIS '94 Plenary V]
  • AUTHORS and COAUTHORS INDEX
  • Cover

Full text

  
SYNERGY OF PHOTOGRAMMETRY, REMOTE SENSING AND GIS 
— THE MOMS EXAMPLE 
Dieter Fritsch 
Institute of Photogrammetry, Stuttgart University, Keplerstrasse 11, D-70174 Stuttgart, Germany 
CGIS/ISPRS Commission II Conference 1994, Plenary Paper 
KEY WORDS: Modular Optical Multispectral/Stereo Scanner, digital terrain model generation, DTM inte- 
gration in GIS, classification, Russian Space Station MIR 
ABSTRACT 
Digital spatial data acquisition and processing demand a high degree for automation and integration. Auto- 
mation is necessary to process the huge amount of data captured by digital airborne and spaceborne sensors; 
integration allows further application of processed data in Geographic Information Systems (GIS). 
Using the German development MOMS (Modular Optoelectronic Multispectral/Stereo Scanner) as an ex- 
ample — a digital spaceborne sensor for photogrammetric and remote sensing applications — the paper gives 
guidelines for further sensor developments and its data integration in GIS. 
The MOMS sensor of its 2nd generation (MOMS02) is capable to capture three-fold stereo imagery within 
along-track movement, high resolution images up to 4.4m ground pixel size and multispectral images with 13.2m 
ground pixel size. It was flown onboard the Space Shuttle from April 26th till May 6th, 1993 during the 2nd 
German Spacelab Mission. In the meantime, first data are processed and the results give optimism for the 
synergy of photogrammetry and remote sensing. 
The MOMS digital terrain models are integrated in GIS, furthermore thematic evaluations are also carried 
out and are linked to semantic data models. For this reason, MOMS data processing delivers for the first time a 
combination of terrain data and semantic data simultaneously to be stored in GIS. From May 1995 the MOMS 
sensor will be flown onboard the Russian Space Station MIR for a three years’ term where besides stereo and 
multispectral data temporary aspects are of importance. 
KURZFASSUNG 
Die digitale Daterfassung und -verarbeitung erfordert eine hohen Automations- und Integrationsgrad. Automa- 
tion ist die unabdingbare Voraussetzung zur Bearbeitung der großen Datenmengen, die durch flugzeug- oder 
satellitengetragene digitale Sensoren anfallen; die Integration erlaubt die Nutzung von prozessierten Daten in 
Geo-Informationssystemen (GIS). 
Am Beispiel der deutschen Entwicklung MOMS - ein digitaler Erdbeobachtungssensor für photogrammetri- 
sche und thematische Anwendungen - gibt der vorliegende Beitrag Richtlinien für weitere Sensorentwicklungen 
und dessen Datenintegration in GIS. 
MOMS02 ist in der Lage, Stereo-Bilddaten nach dem Pushbroom-Prinzip in drei Zeilen entlang der Sensor- 
bewegung zu erzeugen, ebenso steht die Erfassung von hochauflósenden Bildern von bis zu 4.4m Bodenpixel 
im Vordergrund neben der gleichzeitigen Erzeugung von Mulitspektralbildern mit einer Auflósung von 13.2m. 
Dieser Sensor wurde wührend der 2. Deutschen Spacelab-Mission vom 26. April bis 5. Mai 1993 an Bord des 
Space Shuttle erfolgreich eingesetzt. Mittlerweile konnten erste Datensátze prozessiert werden; die Ergebnisse 
geben Optimismus für die Synergie von Photogrammetrie und Fernerkundung. 
Die digitalen Gelándemodelle (DGM) automatisch abgeleitet mit MOMSO02-Daten werden in GIS integriert, 
des weiteren befinden sich thematische Auswertungen in der Bearbeitung, die mit thematischen GIS-Modellen 
zu verknüpfen sind. Aus diesem Grund liefert die Auswertung der MOMS02-Daten zum ersten Mal die Gelegen- 
heit der simultanen Kombination von Gelándegeometrie und -topographie abzuspeichern in GIS. Ab Mai 1995 
wird der MOMSO02-Sensor an Bord der russischen Raumstation MIR für etwa drei Jahre zur kontinuierlichen 
Datenerfassung eingesetzt, wobei neben der gleichzeitigen Erzeugung von Stereo- und Multispektralaufnahmen 
zeitliche Aspekte ebenso von Bedeutung sind. 
"13
	        

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Allam, Mosaad, and Gordon Plunkett. Systems for Data Processing, Anaylsis and Representation. The Surveys, Mapping and Remote Sensing, Natural Resources Canada, 1994.
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