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Special UNISPACE III volume

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

Bibliographic data

fullscreen: Special UNISPACE III volume

Monograph

Persistent identifier:
856485039
Author:
Marsteller, Deborah
Title:
Special UNISPACE III volume
Sub title:
including: ISPRS Workshop on "Resource Mapping from Space", ISPRS-EARSeL Workshop on "Remote Sensing for the Detection, Monitoring and Mitigation of Natural Disasters", ISPRS-NASA Seminar on "Environment and Remote Sensing for Sustainable Development", July 1999, Vienna, Austria
Scope:
IV, 170 Seiten
Year of publication:
1999
Place of publication:
Coventry
Publisher of the original:
RICS Books
Identifier (digital):
856485039
Illustration:
Illustrationen, Diagramme, Karten
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:
ISPRS Workshop on "Resource Mapping from Space"
Document type:
Monograph
Structure type:
Chapter

Chapter

Title:
PERSONAL GROUND STATION (PGS) SCANER - NETWORK FOR "RESURS-O" SATELLITE DATA ACQUISITION AND PROCESSING. NEW IMAGE NEURONET PROCESSING TECHNOLOGY FOR ENVIRONMENT MONITORING AND RESOURCE MAPPING. Dr. Vladimir E. Gershenzon
Document type:
Monograph
Structure type:
Chapter

Contents

Table of contents

  • Special UNISPACE III volume
  • Cover
  • ColorChart
  • Title page
  • Table of Contents
  • FOREWORD
  • ISPRS Workshop on "Resource Mapping from Space"
  • WORKSHOP SUMMARY SHEET - 10 JUNE 1999 Organized by: John Trinder (Secretary General ISPRS) and Klaas Jan Beek (Congress Director ISPRS)
  • [United Nations Conclusions and Recommendations] THIRD UNITED NATIONS CONFERENCE ON THE EXPLORATION AND PEACEFUL USES OF OUTER SPACE
  • THE ROLE OF REMOTE SENSING IN NATURAL RESOURCE MANAGEMENT. Andrew K. Skidmore
  • FUTURE PROSPECTS FOR MAPPING FROM SPACE. by Gottfried Konecny
  • DATA FUSION FOR A BETTER EXPLOITATION OF DATA IN ENVIRONMENT AND EARTH OBSERVATION SCIENCES. Lucien WALD
  • SUSTAINABLE DEVELOPMENT AND REMOTE SENSING. D. P. Rao
  • MONITORING WATER RESOURCES AND AGRO-ECOSYSTEM PRODUCTIVITY FROM SPACE. Wim G.M. Bastiaanssen
  • MONITORING FROM SPACE OF GLOBAL VEGETATION AND LAND USE CHANGE - RECENT ADVANCES AND IMMINENT POSSIBILITIES. Lennart Olsson
  • OPERATIONAL CROP MONITORING AND PRODUCTION FORECAST BY REMOTE SENSING IN HUNGARY. G. Csornai. Cs. Wirnhardt, Zs. Suba. P. Somogyi, G. Nador, L. Martinovich, L. Tikász, A. Kocsis, Gy. Zelei, M. Lelkes
  • SATELLITE REMOTE SENSING APPLICATION IN AGRICULTURECROP MONITORING, YIELD FORESCASTING AND ESTIMATION. Cs. Ferencz, J. Lichtenberger, D. Hamar and P. Bognár
  • LANDSCAPE CHANGES IN SLOVAK REPUBLIC 1970's - 1990's. Jan Feranec, Jan Otahel. Marcel Suri. Tomas Cebecauer
  • PERSONAL GROUND STATION (PGS) SCANER - NETWORK FOR "RESURS-O" SATELLITE DATA ACQUISITION AND PROCESSING. NEW IMAGE NEURONET PROCESSING TECHNOLOGY FOR ENVIRONMENT MONITORING AND RESOURCE MAPPING. Dr. Vladimir E. Gershenzon
  • ISPRS/EARSeL Workshop on "Remote Sensing for the Detection, Monitoring and Mitigation of Natural Disasters"
  • WORKSHOP SUMMARY SHEET - 10 JUNE 1999 Organized by: Lawrence W. Fritz (President ISPRS) and Madeleine Godefroy (EARSeL Secretariat)
  • [United Nations Conclusions and Recommendations] THIRD UNITED NATIONS CONFERENCE ON THE EXPLORATION AND PEACEFUL USES OF OUTER SPACE
  • REPORT. Prof. Ian Dowman (UCL, United Kingdom) Dr. Lucien Wald (Ecole des Mines de Pans. France)
  • NATURAL DISASTERS REMOTE SENSING CAPABILITIES AND APPLICATIONS IN A WIDE CONTEXT. P. Gudmandsen
  • SPACE TECHNOLOGY AND EARTHQUAKE HAZARD MANAGEMENT. J. Béquignon
  • MONITORING OIL SPILLS FROM SPACE: STATE OF THE ART AND PERSPECTIVES. Dr. François Cauneau
  • NATURAL HAZARDS OF GEOLOGIC ORIGINEROSION, LAND DEGRADATION/DESERTIFICATION, VOLCANOES AND ACTIVE FAULTS- THE UNESCO/IUGS GEOLOGICAL APPLICATION OF REMOTE SENSING (GARS)- PROGRAMME. Dietrich Bannert and Robert Missotten
  • REMOTE SENSING SYSTEMS FOR DROUGHT AND DESERTIFICATION MONITORING THE CASE OF MOROCCO. Mohamed AIT BELAID, Ph.D.
  • PHOTOGRAMMETRY AND REMOTE SENSING IN MONITORING, PREDICTION AND PREVENTION OF ENVIRONMENTAL DISASTERS. Professor Adam Linsenbarth
  • REMOTE SENSING TECHNIQUES FOR MONITORING HAZARDOUS WASTE SITES AND SENSITIVE AQUIFERS. Vern Singhroy
  • OPERATIONAL USE OF ENVIRONMENTAL SATELLITE DATA FOR HAZARDS APPLICATIONS. Helen Wood, Director
  • PROGRESS OF THE CEOS DISASTER MANAGEMENT SUPPORT PROJECT. Helen M. Wood and Levin Lauritson
  • APPLICATION OF«4D» TECHNIQUES IN FLOOD MONITORING IN CHINA 1998. Liangcai Chu, Ziwei Li, Yutong Liu
  • ISPRS/NASA Seminar on "Environment and Remote Sensing for Sustainable Development"
  • WORKSHOP SUMMARY SHEET - 10 JUNE 1999 Organized by Lawrence W. Fritz (President ISPRS) and Alex Tuyahov (Manager of NASA Earth Science Applications and Research Program)
  • [United Nations Conclusions and Recommendations] THIRD UNITED NATIONS CONFERENCE ON THE EXPLORATION AND PEACEFUL USES OF OUTER SPACE
  • HIGH RESOLUTION EARTH IMAGING FROM SPACE - A COMMERCIAL PERSPECTIVE ON A CHANGING LANDSCAPE. John T. Neer
  • PERSPECTIVES OF INDIAN REMOTE SENSING PROGRAMME TOWARDS SUSTAINABLE DEVELOPMENT. K Kasturirangan
  • PREVENTION OF WILDFIRES BY SATELLITE. Dr. Marcio Barbosa
  • NASDA'S STRATEGY FOR EARTH OBSERVATION DATA USE PROMOTION IN DEVELOPMENT COUNTRIES. Takashi Moriyama
  • NEW RUSSIAN ATLAS "SPACE METHODS FOR GEOECOLOGY". V. Kravtsova
  • Multifunctional Optoelectronic System for Aero-space Monitoring (MOSAM). K. Iliev, I. Dimitrova, N.Dimitrov, Prof. C. Voute, Dr. A. Ivanova, K. Popov
  • APPENDIX: Authors and Co-Authors Index Volume XXXII, Part 7C2 - UNISPACE III, Remote Sensing Papers
  • Cover

Full text

International Archives of Photogrammetiy and Remote Sensing. Vol. XXXII Part 7C2, UNISPACE III. Vienna. 1999 
72 
I5PR5 
UNISPACE III - ISPRS Workshop on 
“Resource Mapping from Space” 
9:00 am -12:00 pm, 22 July 1999, VIC RoomB 
Vienna, Austria 
I5PR5 
The interface includes: 
the intermediary -frequency signal amplifier, 
demodulator and decoder, 
analog-to-digital and digital-to-analog converters for 
the antenna control signals, 
PC input/output interface, 
an imitator of the satellite signal, 
secondary power supply devices for the antenna 
system. 
The ScanER #3-1 station specifications are listed in the Table 1. 
Antenna dish diameter - 1.6 m 
Antenna rotation range: 
azimuth - +/- 270 deg. 
elevation - 90 deg. 
Max. antenna rotation speed (not less): 
azimuth -12 deg/s 
elevation- 2.5 deg/s 
Antenna positioning accuracy - 0.1 deg 
Max. antenna positioner torque: 
azimuth - 50 kgm 
elevation - 30 kgm 
Antenna positioner weight - 70 kg 
Feed polarization - right hand circular 
Input frequency - 8175 - 8225 MHz 
LNA noise temperature - 55 K 
Max. wind speed: 
operational - 15 m/s 
survival - 40 m/s 
Temperature range - -50 ... +50 C 
Table 1. The ScanER #3-1 station specifications. 
R&D Center ScanEx developed and produced 3 modifications of - ScanER # 4 PGS for reception information from 
complexes for Resurs-0 satellite series images acquisition: Resurs-01 # 4 on 8192 MHz input frequency'. 
ScanER #3-1 PGS for reception information from The main differences of these complexes modifications are 
Resurs-01 # 3 on 8192 MHz input frequency; shown in the table 2. 
ScanER #3-2 PGS for reception information from 
Resurs-01 # 3 on 465 MHz input frequency; 
PGS name 
Antenna dish 
diameter, m 
Input frequency', 
MHz 
Input data rate, 
Mbit/s 
Modulation type 
Number of 
receiving stations 
ScanER #3-1 
1.6 
8192 
7.68 
QPSK 
13 
ScanER #3-2 
3.0 
465 
7.68 
QPSK 
2 
ScanER #4 
2.0-2.3 
8192 
15.36 
BPSK 
3 
Table 2 Modifications of Resurs-0 images receiving systems. 
The PC/antenna interface is designed as a desktop unit 
(33x33x32cm) with 220V, 50Hz single-phase power supply and 
a PC extension board for ISA bus. The system indoors and 
outdoors parts are connected with 50 m long cables. 
With 1.6 m dish, the station parameters enable to receive data 
with a bit error probability' not more than 10' 6 at elevations from 
approximately 10 degrees and higher. The antenna rotation speed 
is sufficient to track the satellite with practically no bit error rate 
increase around the culmination for as high orbits as 80 deg. 
Software 
The station software consists of two basic MS Windows (95) 
applications intended for: 
the station and data acquisition control (Resurs 
Receiver), 
data quick-look and preliminary processing 
(Scan Viewer) 
and three additional MS Windows 95/NT applications:
	        

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