DocumentCode :
729936
Title :
HapSticks: A novel method to present vertical forces in tool-mediated interactions by a non-grounded rotation mechanism
Author :
Kato, Ginga ; Kuroda, Yoshihiro ; Nisky, Ilana ; Kiyokawa, Kiyoshi ; Takemura, Haruo
Author_Institution :
Grad. Sch. of Inf. Sci. & Technol., Osaka Univ., Suita, Japan
fYear :
2015
fDate :
22-26 June 2015
Firstpage :
400
Lastpage :
407
Abstract :
Force feedback in tool-mediated interactions with the environment is important for successful performance of complex tasks in our daily life as well as in specialized fields like medicine. Stylus-based haptic devices are studied and used extensively, and most of these devices require either grounding or attachment to the body of the user. Recently, non-grounded haptic devices are getting an increasing attention. In this paper, we propose a novel method to represent the vertical forces that are applied on the tip of a tool: a non-grounded rotation mechanism that mimics the cutaneous sensation that is caused by these tool-tip forces. To evaluate this method, we developed a novel ungrounded haptic device - HapSticks - that renders the sensation of manipulating objects using chopsticks. First, we present the novel mechanism, and test the pressure that it applies on the hand of the user when rendering a force at the tip of the tool in comparison to applying a real force at the tip of the tool. Next, we used the mechanism to build the HapSticks device as an example of an application of the proposed method, and present a psychophysical evaluation of this device in a virtual weight discrimination task.
Keywords :
force feedback; haptic interfaces; human computer interaction; HapSticks; chopsticks; cutaneous sensation; force feedback; manipulating objects; nongrounded haptic devices; nongrounded rotation mechanism; pressure test; rendering; stylus-based haptic devices; tool-mediated interactions; tool-tip forces; ungrounded haptic device; vertical forces; virtual weight discrimination task; Force; Haptic interfaces; Indexes; Skin; Three-dimensional displays; Thumb; Torque;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
World Haptics Conference (WHC), 2015 IEEE
Conference_Location :
Evanston, IL
Type :
conf
DOI :
10.1109/WHC.2015.7177745
Filename :
7177745
Link To Document :
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