A study of haptic icons

The goal for this research is to study a new class of force feedback applications based on abstract messages we call haptic icons. With the introduction of active haptic displays, a single knob or joystick can be used to control several different, sometimes non-related, functions. The functions a...

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Main Author: Enriquez, Mario
Format: Others
Language:English
Published: 2009
Online Access:http://hdl.handle.net/2429/12447
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spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-124472018-01-05T17:36:26Z A study of haptic icons Enriquez, Mario The goal for this research is to study a new class of force feedback applications based on abstract messages we call haptic icons. With the introduction of active haptic displays, a single knob or joystick can be used to control several different, sometimes non-related, functions. The functions associated with these multi-function handles can no longer be identified from one another by position, shape or texture differences. Haptic icons are brief programmed forces applied to a user through a haptic interface conveying an object's or event's state, function or content in a manner similar to visual or auditory icons. This thesis begins with a presentation of several tools that were developed to aid this research. It then describes a series of psychophysical tests designed to obtain the basic perceptual limits for our haptic interface. Knowing these perceptual limits is a prerequisite for proper haptic icon design. We analyzed a set of synthetically constructed haptic icons using Multidimensional Scaling, in order to discover the underlying perceptual processes in identifying different haptic stimuli. Results show that a set of icons constructed by varying the frequency, magnitude and shape of 2-sec, time-invariant waveforms map to two perceptual axes, which differ depending on the signals' frequency range, and suggest that expressive capability is maximized in one frequency subspace. I finish by proposing future work to be done on this area. Science, Faculty of Computer Science, Department of Graduate 2009-08-20T21:11:13Z 2009-08-20T21:11:13Z 2002 2002-11 Text Thesis/Dissertation http://hdl.handle.net/2429/12447 eng For non-commercial purposes only, such as research, private study and education. Additional conditions apply, see Terms of Use https://open.library.ubc.ca/terms_of_use. 12870260 bytes application/pdf
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language English
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description The goal for this research is to study a new class of force feedback applications based on abstract messages we call haptic icons. With the introduction of active haptic displays, a single knob or joystick can be used to control several different, sometimes non-related, functions. The functions associated with these multi-function handles can no longer be identified from one another by position, shape or texture differences. Haptic icons are brief programmed forces applied to a user through a haptic interface conveying an object's or event's state, function or content in a manner similar to visual or auditory icons. This thesis begins with a presentation of several tools that were developed to aid this research. It then describes a series of psychophysical tests designed to obtain the basic perceptual limits for our haptic interface. Knowing these perceptual limits is a prerequisite for proper haptic icon design. We analyzed a set of synthetically constructed haptic icons using Multidimensional Scaling, in order to discover the underlying perceptual processes in identifying different haptic stimuli. Results show that a set of icons constructed by varying the frequency, magnitude and shape of 2-sec, time-invariant waveforms map to two perceptual axes, which differ depending on the signals' frequency range, and suggest that expressive capability is maximized in one frequency subspace. I finish by proposing future work to be done on this area. === Science, Faculty of === Computer Science, Department of === Graduate
author Enriquez, Mario
spellingShingle Enriquez, Mario
A study of haptic icons
author_facet Enriquez, Mario
author_sort Enriquez, Mario
title A study of haptic icons
title_short A study of haptic icons
title_full A study of haptic icons
title_fullStr A study of haptic icons
title_full_unstemmed A study of haptic icons
title_sort study of haptic icons
publishDate 2009
url http://hdl.handle.net/2429/12447
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