A Concept for Applying VR and AR Technologies to Support Efficient 3D Non-contact Model Digitalization

In this paper a new interactive digitization concept for large real world objects is described using the virtual reality (VR) environment Elbe Dom. The method combines augmented reality (AR) technologies with a high quality display of textured three dimensional (3D) models. One focus is thereby the...

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Vydané v:2009 IEEE Virtual Reality Conference s. 257 - 258
Hlavní autori: Schoor, Wolfram, Masik, Steffen, Tumler, Johannes, Adler, Simon, Hofmann, Marc, Trostmann, Erik
Médium: Konferenčný príspevok..
Jazyk:English
Vydavateľské údaje: IEEE 01.03.2009
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ISBN:9781424439430, 1424439434
ISSN:1087-8270
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Abstract In this paper a new interactive digitization concept for large real world objects is described using the virtual reality (VR) environment Elbe Dom. The method combines augmented reality (AR) technologies with a high quality display of textured three dimensional (3D) models. One focus is thereby the display of valuable information of the actual measuring process. The proposed method is a non-contact technique, especially applicable to objects with freeform and a size up to 5 m times 5 m times 3 m. The method achieves an accuracy value of less than 1 mm within the whole measuring volume.
AbstractList In this paper a new interactive digitization concept for large real world objects is described using the virtual reality (VR) environment Elbe Dom. The method combines augmented reality (AR) technologies with a high quality display of textured three dimensional (3D) models. One focus is thereby the display of valuable information of the actual measuring process. The proposed method is a non-contact technique, especially applicable to objects with freeform and a size up to 5 m times 5 m times 3 m. The method achieves an accuracy value of less than 1 mm within the whole measuring volume.
Author Hofmann, Marc
Trostmann, Erik
Schoor, Wolfram
Adler, Simon
Masik, Steffen
Tumler, Johannes
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  givenname: Steffen
  surname: Masik
  fullname: Masik, Steffen
  organization: Fraunhofer Institute for Factory Operation and Automation email: steffen.masik@iff.fraunhofer.de
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  givenname: Johannes
  surname: Tumler
  fullname: Tumler, Johannes
  organization: Fraunhofer Institute for Factory Operation and Automation email: johannes.tuemler@iff.fraunhofer.de
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  givenname: Simon
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  fullname: Adler, Simon
  organization: Fraunhofer Institute for Factory Operation and Automation email: simon.adler@iff.fraunhofer.de
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  givenname: Marc
  surname: Hofmann
  fullname: Hofmann, Marc
  organization: Fraunhofer Institute for Factory Operation and Automation email: marc.hofmann@iff.fraunhofer.de
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  givenname: Erik
  surname: Trostmann
  fullname: Trostmann, Erik
  organization: Fraunhofer Institute for Factory Operation and Automation email: erik.trostmann@iff.fraunhofer.de
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Snippet In this paper a new interactive digitization concept for large real world objects is described using the virtual reality (VR) environment Elbe Dom. The method...
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StartPage 257
SubjectTerms 3D model generation
and virtual realities
augmented
Calibration
Displays
Geometrical optics
H.5.1 [Information Interfaces and Presentation]: Multimedia Information Systems-Artificial
I.4.1 [Image Processing and Computer Vision]: Digitization and Image Capture-Scanning
Information geometry
Optical distortion
Optical sensors
Sensor systems
Target tracking
tracking
Virtual reality
Volume measurement
VR display
Title A Concept for Applying VR and AR Technologies to Support Efficient 3D Non-contact Model Digitalization
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