DocumentCode
2035163
Title
Enabling functional validation of virtual cars through Natural Interaction metaphors
Author
Moehring, Mathias ; Froehlich, Bernd
Author_Institution
Group Res., Volkswagen AG, Germany
fYear
2010
fDate
20-24 March 2010
Firstpage
27
Lastpage
34
Abstract
Natural Interaction in virtual environments is a key requirement for the virtual validation of functional aspects in automotive product development processes. Natural Interaction is the metaphor people encounter in reality: the direct manipulation of objects by their hands. To enable this kind of Natural Interaction, we propose a pseudo-physical metaphor that is both plausible enough to provide realistic interaction and robust enough to meet the needs of industrial applications. Our analysis of the most common types of objects in typical automotive scenarios guided the development of a set of refined grasping heuristics to support robust finger-based interaction of multiple hands and users. The objects´ behavior in reaction to the users´ finger motions is based on pseudo-physical simulations, which also take various types of constrained objects into account. In dealing with real-world scenarios, we had to introduce the concept of Normal Proxies, which extend objects with appropriate normals for improved grasp detection and grasp stability. An expert review revealed that our interaction metaphors allow for an intuitive and reliable assessment of several functionalities of objects found in a car interior.
Keywords
automotive engineering; haptic interfaces; human computer interaction; product development; virtual reality; automotive product development; automotive scenarios; functional validation; grasp detection; grasp stability; grasping heuristics; industrial applications; metaphor people encounter; natural interaction metaphors; normal proxies; pseudo-physical simulations; pseudophysical metaphor; real-world scenarios; realistic interaction; robust finger-based interaction; user finger motions; virtual cars; virtual environments; Automotive engineering; Electrical equipment industry; Fingers; Grasping; Hardware; Object detection; Robust stability; Robustness; Virtual environment; Virtual reality; Direct Interaction; Immersive Applications;
fLanguage
English
Publisher
ieee
Conference_Titel
Virtual Reality Conference (VR), 2010 IEEE
Conference_Location
Waltham, MA
ISSN
1087-8270
Print_ISBN
978-1-4244-6237-7
Electronic_ISBN
1087-8270
Type
conf
DOI
10.1109/VR.2010.5444819
Filename
5444819
Link To Document