Developing a novel haptic device for non-rigid computer graphic objects utilizing unmanned aerial vehicles

In this paper, we propose a novel haptic device consisting of a Parrot quadcopter AR Drone 2.0 that delivers force-feedback to users when they press on the surface of the drone in the vertical direction. This drone haptic device will free users from any cumbersome devices which were utilized in prev...

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Main Authors: Alzin Mohamad Ghaith, Imamura Hiroki
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:ITM Web of Conferences
Online Access:https://www.itm-conferences.org/articles/itmconf/pdf/2019/04/itmconf_dictap2019_04001.pdf
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spelling doaj-647d27a96b5e4f22b821fdb750bd2a862021-04-02T11:07:12ZengEDP SciencesITM Web of Conferences2271-20972019-01-01270400110.1051/itmconf/20192704001itmconf_dictap2019_04001Developing a novel haptic device for non-rigid computer graphic objects utilizing unmanned aerial vehiclesAlzin Mohamad GhaithImamura HirokiIn this paper, we propose a novel haptic device consisting of a Parrot quadcopter AR Drone 2.0 that delivers force-feedback to users when they press on the surface of the drone in the vertical direction. This drone haptic device will free users from any cumbersome devices which were utilized in previous haptics systems and allow them to sense kinesthetic feedback coming from the drone which in turn renders computer graphic objects, for example, a virtual box. Specifically, this system performs damped harmonic oscillation force motion on users’ hands and fingers. The oscillation function is implemented on the drone whenever users nudge the drone down. Overall, we evaluated the system with ten subjects, and results show the effectiveness of using damping oscillation motion to provide force-feedback delivered from the drone.https://www.itm-conferences.org/articles/itmconf/pdf/2019/04/itmconf_dictap2019_04001.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Alzin Mohamad Ghaith
Imamura Hiroki
spellingShingle Alzin Mohamad Ghaith
Imamura Hiroki
Developing a novel haptic device for non-rigid computer graphic objects utilizing unmanned aerial vehicles
ITM Web of Conferences
author_facet Alzin Mohamad Ghaith
Imamura Hiroki
author_sort Alzin Mohamad Ghaith
title Developing a novel haptic device for non-rigid computer graphic objects utilizing unmanned aerial vehicles
title_short Developing a novel haptic device for non-rigid computer graphic objects utilizing unmanned aerial vehicles
title_full Developing a novel haptic device for non-rigid computer graphic objects utilizing unmanned aerial vehicles
title_fullStr Developing a novel haptic device for non-rigid computer graphic objects utilizing unmanned aerial vehicles
title_full_unstemmed Developing a novel haptic device for non-rigid computer graphic objects utilizing unmanned aerial vehicles
title_sort developing a novel haptic device for non-rigid computer graphic objects utilizing unmanned aerial vehicles
publisher EDP Sciences
series ITM Web of Conferences
issn 2271-2097
publishDate 2019-01-01
description In this paper, we propose a novel haptic device consisting of a Parrot quadcopter AR Drone 2.0 that delivers force-feedback to users when they press on the surface of the drone in the vertical direction. This drone haptic device will free users from any cumbersome devices which were utilized in previous haptics systems and allow them to sense kinesthetic feedback coming from the drone which in turn renders computer graphic objects, for example, a virtual box. Specifically, this system performs damped harmonic oscillation force motion on users’ hands and fingers. The oscillation function is implemented on the drone whenever users nudge the drone down. Overall, we evaluated the system with ten subjects, and results show the effectiveness of using damping oscillation motion to provide force-feedback delivered from the drone.
url https://www.itm-conferences.org/articles/itmconf/pdf/2019/04/itmconf_dictap2019_04001.pdf
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AT imamurahiroki developinganovelhapticdevicefornonrigidcomputergraphicobjectsutilizingunmannedaerialvehicles
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