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Proceedings of the Symposium on Progress in Data Processing and Analysis

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

Bibliographic data

fullscreen: Proceedings of the Symposium on Progress in Data Processing and Analysis

Monograph

Persistent identifier:
856470848
Title:
Proceedings of the Symposium on Progress in Data Processing and Analysis
Sub title:
September 8 - 12, 1990, Dresden, GDR
Scope:
1 Online-Ressource (396 Seiten)
Year of publication:
1990
Place of publication:
Berlin
Publisher of the original:
Kammer der Technik
Identifier (digital):
856470848
Illustration:
Illustrationen, Diagramme
Language:
English
Usage licence:
Attribution 4.0 International (CC BY 4.0)
Publisher of the digital copy:
Technische Informationsbibliothek Hannover
Place of publication of the digital copy:
Hannover
Year of publication of the original:
2016
Document type:
Monograph
Collection:
Earth sciences

Chapter

Title:
[S 3 Analytical Instruments (WG II / 1)]
Document type:
Monograph
Structure type:
Chapter

Chapter

Title:
ANALPRET Computer Assisted and Controlled Plotter for Teaching and Interpretation. M. G. Gerencser, Prof. Dr.
Document type:
Monograph
Structure type:
Chapter

Contents

Table of contents

  • Proceedings of the Symposium on Progress in Data Processing and Analysis
  • Cover
  • ColorChart
  • Title page
  • Title page
  • Copies of this book may be obtained from Gesellschaft für Photograrmetrie und Fernerkundung at KAMMER DER TECHNIK, [...]
  • Introduction
  • Commission II PROGRESS IN DATA PROCESSING AND ANALYSIS
  • Working Group Chairman
  • CONTENTS
  • [S 1 Special Session]
  • ABOUT THE IMPORTANCE OF COMMISSION II WITHIN THE INTERNATIONAL SOCIETY FOR PHOTOGRAMMETRY AND REMOTE SENSING. Jürgen Pietschner
  • Advances in the Processing and Analysis of Photogrammetric and Remotely Sensed Data. Prof Dr. Klaus Szangolies
  • [S 2 Manufacturers Forum]
  • New Developments in the Processing Software for P-Series Planicomp. Johannes Saile, Oberkochen
  • PHOTOGRAMMETRIC PRODUCTS FROM LEICA. A Stewart Walker
  • [S 3 Analytical Instruments (WG II / 1)]
  • Digital Photogrammetric Applications with the Prime-Wild S9 Analytical Plotter. David Wilkins
  • DICOMAT - The analytical photogrammetric restitution system of Carl Zeiss JENA GmbH. G. Bauer
  • ANALPRET Computer Assisted and Controlled Plotter for Teaching and Interpretation. M. G. Gerencser, Prof. Dr.
  • [S 4 Systems for Analysis of Remotely Sensed Data (WG II / 2)]
  • LOW COST IMAGE PROCESSING ON PERSONAL COMPUTERS: THE MACINTOSH-II BASED DIRIGO SYSTEM. Manfred Ehlers
  • A low-cost image processing system on a 32-bit RISC microcomputer. Mulder N. J., H. R. Kostwinder and L. J. Blesius
  • [S 5 Systems for Reception, Recording, Preprocessing, Archiving and Dissemination of Remotely Sensed Data (WG II / 3)]
  • A Fast Storage Unit With Integrated Database Processor for Image Data. Lieckfeldt, P.; Missling, K.-D. ; Neumann, B.
  • THEMATIC COMPRESSION OF METEOROLOGICAL IMAGE DATA. Hans-Jörg Grundmann, Adolf Günther, Olaf Hellmuth
  • A STANDARD METHOD FOR CREATING SELF-DEFINING DATA STRUCTURES FOR INFORMATION ARCHIVE AND TRANSFER. John A. Johnson
  • LANGUAGE REQUIREMENTS FOR UNDERSTANDING RETRIEVED DATA. Fred C. Billingsley
  • [S 6 Systems and Instrumentation for Synthetic Aperture Radar Processing (WG II / 4)]
  • Infrared and Microwave Radiometry for Mineral Identification and Moisture Determination. Dr. rer. nat. K. Schmidt, Dr. sc. H. Weichelt, Dipl. -Ing. W. Herr, Dipl.-Geologe M. Iffert
  • Some results of microwave measurements during the INTERCOSMOS complex experiments GEOEX, TELEGEO and CARIBE. Horst Weichelt
  • [S 7 Acquisition and Use of Space Photographic Data (IC-WG I / II)]
  • Cartographic Potential of Space Images. Karsten Jacobsen
  • Multispectral photocamera MK-4. Dr. Yu. KIENKO, Dr. I. NENASHEV, Yu. BELOUS
  • THE COMPOSITING DEVICES FOR PHOTOIMAGES OF MK-4 CAMERA AND PREPARATION OF PHOTOMOSAICS AND PHOTOSKETCHES ON THESE DEVICES. Dr. Yu. KIENKO, Dr. V. KISELEV, Dr . Yu. ORLOV
  • NEW TOPOGRAPHIC AIR SURVEY CAMERA WITH FORWARD MOTION COMPENSATION AFA-TK-10/18. Afremov V. G., Afanasiev I. Yu., Babashkin N. M, llin V. B., Nekhin S. S.
  • On QUALITY IMPROVEMENT OF AIRBORNE REMOTE SENSING DATA AND THEIR PROCESSING MEETING THE USERS'DEMANDS. FRANZ PLISCHKE, SUSANN HEENE
  • TECHNIQUE FOR DETERMINING BRIGHTNESS AND SPATIAL-FREQUENCY CHARACTERISTICS OF TERRAIN FROM AEROSPACE SURVEY MATERIALS. Dr. L. M. Matiyasevich, T. I. Mikheikina, B. V. Svechnikov
  • PHOTOMETRICAL METHOD OP MAKING THE MAPS OP OPTICALLY-UNIPORM TERRAIN RELIEF. Dr. Kiselev V. V., Dr. Mamnitsky V. I., Dr. Matiyasevich L. M
  • JOINT USE OF SPECTROZONAL AND RADIO-THERMAL IMAGES OF MICROWAVE RANGE IN PROBLEMS OF INTERPRETATION OF AEROSPACE SURVEY RESULTS. Dr. E. Maslovsky, Dr. V. Troitsky, Dr. Yu. Shestopalov
  • REMOTE SENSING OF ECOLOGICAL SITUATIONS. Dr. V. A. SUCHTCHENYA
  • Application of cosmic photographs for inventory and man-making of natural resources. by Arkhipov V. I.
  • COMPOSITION CODING OF REMOTE SENSING DATA FOR DEVELOPING GEOINFORMATION TECHNOLOGIES OF OF RESEARCH OF NATURAL ENVIRONMENT. N. F. AFANASYEV.
  • Efficient Technologies for Geological Projects and Nature Protection Studies Using Aero/Space Photography Data in USSR. By A. V. Pertsov and S. G. Slutskaya
  • DISTINGUISHABLE DETAILS IN AIR PHOTOS. Werner Schubert
  • PROGRESS IN SPACE PHOTOGRAPHY. KARL-HEINZ MAREK
  • [S 8 Design and Algorithmic Aspects of Digital Photogrammetric Systems]
  • PROGRESS AND POTENTIAL OF DIGITAL PHOTOGRAMMETRIC WORKSTATIONS. IAN DOWMAN
  • DIPS II - Turning a Standard Computer Workstation into a Digital Photogrammetric Station. A. Gruen, H.A. Beyer
  • CONSEQUENCES OF THE PHOTOGRAMMETRICAL VIEW OF SOLVING SPECIAL TASKS IN DIGITAL PHOTOGRAMMETRY WITH SERIAL COMPUTERS. DR. ERHARD PROSS
  • An Advanced Digital Stereophotogrammetric System (ADSS)- Current Developments at the Technical University of Berlin. Gerhard Koenig, Wolfgang Nickel, Juergen Storl
  • Low Cost Digital Photogrammetric System for Education and Training "BIRDMAN". Sunji MURAI and Kesami KOIDO
  • Off-Line and On-Line Applications of Macro Photogrammetry. Karsten Jacobsen
  • DIGITAL PHOTOGRAMMETRIC WORKSTATIONS. Peter Lohmann , Christoph Lüken, Gustav Picht
  • INTEGRATION OF THE NOS CAMERA CALIBRATION SYSTEM INTO THE IDPF. Roop C. Malhotra
  • ANALYTICAL VERSUS DIGITAL PHOTOGRAMMETRIC TECHNIQUES AND SYSTEMS. BRANKO MAKAROVIC
  • PHOTOGRAMMETRIC OPEN SYSTEMS. Atef A. Elassal
  • ANALOG OR DIGITAL MAPPING FROM AERIAL PHOTOGRAPHS? A Contribution to the Conception of Digital Mapping Systems. O. Kölbl
  • DESCRIBING DIGITAL PHOTOGRAMMETRY BY FUNCTIONAL ANALYTICAL METHODS. DR. ERHARD PROSS
  • Modular Concept of an Airborne System for Collecting, Processing and Analysis of Remotely Sensed Data. Bach E., Nopirakowski J., Oertel D.
  • Experimental Airborne Remote Sensing with Infrared-Scanner and Panchromatic CCD Area Array Camera (Camcorder). Weng, A.; Dr. Nopirakowski, J.; Ehrenberg, M.; Georgino, P.; Radtke, B.; Dr. Reulke, R.
  • [S 9 Additional Paper]
  • LEAST SQUARES POLYNOMIAL SURFACE FITTING WITH OVERLAPPING DATA. W. P. SEGU
  • Report to Commission II
  • ISPRS Intercommission Working Group II/III "DESIGN AND ALGORITHMIC ASPECTS OF DIGITAL PHOTOGRAMMETRIC SYSTEMS" Report to Commission II. H. Ebner, I. Dowman, C. Heipke
  • Working Group II/l Analytical Instrument Activities. WORKING GROUP MISSION. prepared by Morris L McKenzie
  • AUTHORS LIST
  • Cover

Full text

53 
This program controls the different function of 
stepper, as measuring mode, stepped by hand or automatically 
and so on. 
The optical structure of this plotter fol1 owes the 
idea of magnifying glass with telescope, when the magni f yi ng 
glass has to be a well corrected C photogr aphi c type} lens 
system in order to achieve acceptable optical resolutions. 
The optical enlargement may be changed by the focus of 
frontal lens system. In our case the enlargements are 7x, 1 Ox 
and 12x. 
A light measuring mark illuminated with special bulb has 
been built into the optical system, the illumination may be 
control 1 ed. 
The software of the Analpret are written in Borland 
Turbo Basic, which produces compiled machine code EXE files. 
The GRIDCOR serves to produce a correction array and 
software key for refining parallelity and perpendicularity 
within and between the plotter coordinate systems. The array 
and correction equations are used in the applied measuring 
programs. 
INTOR using the GRIDCOR constants produces the affine 
transformation parameters for calculating image coordinates 
from plotter coordinates and back. The program evaluates the 
measuring result by T test. The residuals are between 
0. 01 -0. 03 mm. 
RELABS uses the GRI EX} OR and I NTOR arrays and geodetic 
coordinates of control points for on line relative and 
absolute orientation. The program uses statistical test and 
gross error investigation for judging the quality of the 
whole measuring process. Using signalised control points 
0.02-0.04 mm RMS may be achieved related to the image plane. 
The coordinates of new points may be determined within 
the RELABS when the PY control automatically eliminates the 
Y parallax. The transformation parameters of RELABS are saved 
automatically. They serve for driving NEWPOI NTS which is 
planned for further application, for huge quantity of new 
points for a file . The Py control seems to be faster in 
NEWPOINTS as the program itself smaller than the RELABS. 
The automatic Py parallax removal may be considered 
"quasi" on line if the model is pointed continually. 
The idea of Py removal is demonstrated in Fig. 2. As it 
is known, there is no Y parallax in the normal case of 
orientation. The transformation of points with the relative 
orientation elements gives the key for this correction as it 
is explained in the figure. 
We have also dealt with the parallax removal in case of 
space intersection by col1inearity. It is observed that 
residuals in adjustment are loaded with gross errors caused 
by the y parallax. It may be logically accepted, that the 
residuals of observation equations, which keep to the 0 if 
the Py correction is also O, will content the spread 
gross error of Py must be corrected automatically. If we 
introduce the sum of absolute value of the residuals as Py 
correction the Py parallax may be eliminated. 
A more exact solution introduces the Py correction as unknown 
into the observation equations.
	        

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