The talk focuses on virtual and augmented reality technologies and examines various devices and technologies in the field of three-dimensional visualization and different applications of these technologies. The author presents a software for 3D interactive visualization, supporting disassembly and assembly processes of specialized equipment that have been developed by the VR-Team. Also, it will give a look at the development process of the presented software.
Arizona Broadband Policy Past, Present, and Future Presentation 3/25/24
Virtual and Augmented reality and their applications
1. Virtual and Augmented reality and their
applications
Rositsa Radoeva, PhD
University of Veliko Tarnovo “St. Cyril and St. Methodius”
rositsa_r@yahoo.com
2. Content
Virtual reality – what it is and it’s origins
Types of Virtual reality
Augmented Reality
Mixed Reality
Application areas
Software for 3D Interactive Visualization and
Animation
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3. What is Virtual Reality?
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It is a medium in which the participants are
immersed in a three-dimensional virtual world,
in which they can interact with a computer-
simulated environment (real or imagined one)
and receive sensations through their senses.
4. Virtual reality - origins
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1938 - Antonin Artaud and “The Theater and its
Double” /“la realite virtuelle”/
1950s - inventor Morton Helig - Sensorama
1968 – Ivan Sutherland and The Sword of Damocles
7. Types of virtual reality
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Textual VR ( interaction without immersion)
Desktop VR (interaction and immersion)
Immersive VR (interaction with high immersion)
Augmented VR ( interaction with/without immersion)
8. VR -Technologies and devices
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Stereoscopic displays and projectors
Auto-stereoscopic displays
Head Mounted Display
Gloves
Cave Automatic Virtual Environment (CAVE)
Volumetric displays
Computer-generated holography
Robotically Operated Shape Display (ROSD)
Body set of sensors
Controllers
9. nVidia 3D Vision
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Using 3D Glasses, computer and a 3D
projector we can
have Virtual Reality Room.
10. VR Oculus Rift
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Virtual reality system that completely
immerses you inside virtual worlds
11. Augmented Reality
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Augmented reality technology combines the real
environment and additional computer-generated
information together by overlaying digital information
into the user’s environment.
12. AR – Technologies and devices
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Mobile phones
Tablets
Smart glasses
Head-up displays
Contact lenses
13. Mixed reality
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Mixed (3D augmented) reality brings people,
places, and objects from the physical and
digital worlds together.
14. Microsoft Holo Lens
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Microsoft HoloLens enables users to engage with
digital content and interact with holographic objects
making it a mixed reality user experience.
Gaze
Simple gestures
Voice commands
Skype
Windows SDK & Unity
15. Microsoft Holo Lens
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Holographic Lens Technology
Sensor Technology
Holographic Processing Unit (HPU)
Interactive Control System
16. Application areas of VR and AR
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Education and training
Architectural design
Medicine
Fine arts
Games (Nintendo 3DS, Labo, PS4)
18. Software for 3D Interactive
Visualization and Animation
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19. Problem
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Usually technicians at various plants have and
operate using two-dimensional plans and
instructions (texts, images and video) of
machines.
But actually they have to operate with real
three-dimensional equipment and its details
The need of 3D visualization
20. Solution
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Development of software for 3D interactive
visualization of the specialized equipment using
nVidia 3D Vision ready stereoscopic computer
system, 3D projector and 3D shutter glasses.
A specific software project is being performed for a
Hydro Multi-E Pressure Booster System from
Grundfos with Three Identical Grundfos Pumps of
CR(I)E type.
21. Technicians’ Responsibilities and
Mechanical Tasks in Commissioning
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To check and test of equipment
To perform constructional and technical completion.
To disassemble the equipment in correct order and
manner with the correct instruments in order to
prepare the parts for commissioning.
To assemble the equipment in correct order and
manner with the correct instruments in order to
prepare the equipment for operation.
22. The Project
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The aim is to create software application for VR
interactive visualization and animation of assembly and
disassembly for commissioning of Hydro Multi-E
pressure booster system from Grundfos.
The main tasks of this VR application are:
To train technicians that has to perform these
operations.
To support the technicians during the disassembly and
assembly processes guiding them to choose the correct
part of the equipment, to be removed/ to be placed
according to its categorization.
23. Potentialities
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3D stereoscopic visualization on nVidia 3D
Vision ready computer system
Ability a technician to examine the 3D model of
the equipment and its parts separately
Ability a technician to choose a particular part
of the equipment from a list of all parts and
perform the operations mentioned in the
previous point.
Ability a technician to read the technical
information for a particular part of the
equipment
24. Potentialities
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Ability a technician to examine the assembly
and disassembly process of the equipment in
VR mode.
Ability a technician to step through the
animated sections, to examine the particular
state of the assembly or disassembly process
and decide to go further or go back in some
steps.
25. Development process
Stereo visualization
Model loading library
Image loading library
GUI - AntTweakBar
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26. Software Functionalities
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Stereoscopic 3D view of all parts of the equipment in
passive and active (animation) mode.
Availability for visualization of each part of the
equipment.
Technicians can examine the selected part from each
side.
Technician can move, zoom in and zoom out the view.
Availability for fast access to specialized technical
information selected for each part of the equipment.
27. Benefits
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Technicians will be ready for disassembling and assembling
of the specialized equipment.
Technicians have three-dimensional and interactive
software with detailed graphical (visual) instructions for
disassembling and assembling of the equipment.
Technicians have a complete package of information about
the equipment assessable through very friendly graphical
user interface of the software.
Technicians have very fast access to the complete package
of specifications, instructions and safety techniques about
all parts of the equipment and the specialized instrument.
Technicians have a software module for light spare parts
management.
28. Thank you for your attention!
Rositsa Radoeva, PhD
St. Cyril and St. Methodius University of Veliko Tarnovo,
Mathematics and Informatics Faculty
Computer Systems and Technologies Dpt.
rositsa_r@yahoo.com