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IAG-Sub-Commission 4.2
Optical 3-D Measurement Techniques
Impressum
Frühere Forschungsprojekte / Former Research Projects
Measurement Robots and Computer Controlled Measurement Systems
Multi-Sensor Systems, Navigation and Machine Guidance
Deformation Measurements and Deformation Analysis
Information Systems and Concepts of Geodetic Networks in Engineering Geodesy
Geodesy and Archaeology
Optical 3D Sensing of Static and Moving Scenes by Computer Controlled Rotating Cameras and 3-D Information Extraction
Development of High Precision Hydrostatic Leveling Systems with Great Measurement Ranges for Applications in Industry
Intelligent Measurement Systems
Multi-Sensor Deformation Measurement System Supported by Knowledge-Based and Cognitive Vision Techniques
Theodolite-based and Knowledge-based Multi-Sensor-System / Theodolit- und wissensbasiertes Mult-Sensor-System
Multi-Sensor Systems for the Maintainance and Production of High Speed Railway Lines
A Satellite Based Multi-Sensor System for Intelligent Land Vehicle Navigation and Tracking System in Hong Kong
NAVIO
Investigation of the Deformation Pattern in the Region of the Periadriatic Fault
Deformation Analysis with Modified Kalman-Filters
OASYS - Integrated Optimization of Landslide Alert Systems
Technical Information Systems for Large Construction Sites
Development of a Knowledge Based Sensor System to Support the Prediction of Land Slides
Concepts of Geodetic Networks for High Speed Railway Lines
Technische Universität Wien - Institut für Geodäsie und Geophysik - Forschungsgruppe Ingenieurgeodäsie
Gusshausstraße 27-29 - 1040 Wien