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Influence of multisensory feedback on haptic accessibility tasks

Identifieur interne : 000809 ( PascalFrancis/Curation ); précédent : 000808; suivant : 000810

Influence of multisensory feedback on haptic accessibility tasks

Auteurs : Inaki Diaz [Espagne] ; Josune Hernantes [Espagne] ; Ignacio Mansa [Espagne] ; Alberto Lozano [Espagne] ; Diego Borro [Espagne] ; Jorge Juan Gil [Espagne] ; Emilio Sanchez [Espagne]

Source :

RBID : Pascal:06-0325827

Descripteurs français

English descriptors

Abstract

Environments of a certain nature, such as those related to maintenance tasks can benefited from haptic stimuli by performing accessibility simulation in a realistic manner. Accessibility is defined as the physical feasibility of accessing an element of a 3D model avoiding undesirable collisions. This paper studies the benefits that multisensory systems can provide in performing this kind of tasks. The research is specially focused on the improvements provided by auditory feedback to the user's performance. We have carried out a user study where participants had to perform an accessibility task with the aid of different combinations of sensorial stimuli. A large haptic interface for aeronautic maintainability has been extended with real-time sound generation capabilities to study this issue. The results of these experiments show that auditory stimuli provide with useful cues to the users helping them to correct trajectories and hence improving their performance.
pA  
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A08 01  1  ENG  @1 Influence of multisensory feedback on haptic accessibility tasks
A09 01  1  ENG  @1 Multisensory interaction in virtual environments
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A11 04  1    @1 LOZANO (Alberto)
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A11 06  1    @1 GIL (Jorge Juan)
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C01 01    ENG  @0 Environments of a certain nature, such as those related to maintenance tasks can benefited from haptic stimuli by performing accessibility simulation in a realistic manner. Accessibility is defined as the physical feasibility of accessing an element of a 3D model avoiding undesirable collisions. This paper studies the benefits that multisensory systems can provide in performing this kind of tasks. The research is specially focused on the improvements provided by auditory feedback to the user's performance. We have carried out a user study where participants had to perform an accessibility task with the aid of different combinations of sensorial stimuli. A large haptic interface for aeronautic maintainability has been extended with real-time sound generation capabilities to study this issue. The results of these experiments show that auditory stimuli provide with useful cues to the users helping them to correct trajectories and hence improving their performance.
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pR  
A30 01  1  ENG  @1 Multisensory Interaction in Virtual Environments. International Conference @2 2 @3 Genova ITA @4 2005-11-18

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Pascal:06-0325827

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<title level="j" type="main">Virtual reality : (Waltham Cross)</title>
<title level="j" type="abbreviated">Virtual reality : (Walth. Cross)</title>
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<title level="j" type="main">Virtual reality : (Waltham Cross)</title>
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<term>Feasibility</term>
<term>Hearing</term>
<term>Maintainability</term>
<term>Maintenance</term>
<term>Modeling</term>
<term>Real time</term>
<term>Sound source</term>
<term>Synchronization</term>
<term>Tactile sensitivity</term>
<term>Trajectory</term>
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<term>Wave generation</term>
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<term>Maintenance</term>
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<div type="abstract" xml:lang="en">Environments of a certain nature, such as those related to maintenance tasks can benefited from haptic stimuli by performing accessibility simulation in a realistic manner. Accessibility is defined as the physical feasibility of accessing an element of a 3D model avoiding undesirable collisions. This paper studies the benefits that multisensory systems can provide in performing this kind of tasks. The research is specially focused on the improvements provided by auditory feedback to the user's performance. We have carried out a user study where participants had to perform an accessibility task with the aid of different combinations of sensorial stimuli. A large haptic interface for aeronautic maintainability has been extended with real-time sound generation capabilities to study this issue. The results of these experiments show that auditory stimuli provide with useful cues to the users helping them to correct trajectories and hence improving their performance.</div>
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