DocumentCode :
115765
Title :
[D70] High-fidelity texture display via programmable friction
Author :
Meyer, D.J. ; Wiertlewski, M. ; Leonardis, D. ; Peshkin, Michael A. ; Colgate, J. Edward
Author_Institution :
Northwestern Univ., Evanston, IL, USA
fYear :
2014
fDate :
23-26 Feb. 2014
Firstpage :
1
Lastpage :
1
Abstract :
Summary form only given. We present two surface haptic displays capable of rendering high-frequency textural content directly to the fingertip exploring the device. The friction of the fingertip with the glass plate is modulated either by electrostatic attraction or ultrasonic out-of-plane vibration. The unique rendering capabilities of these devices is possible to a high-speed non-contact position sensing and haptic rendering computed on a real-time embedded controller with a 5000 Hz update rate. As the finger explores the virtual surface the friction reduction signal, a sine wave at ultrasonic frequency, is modulated with the friction force profile of the texture, encoded in space. The combination of high-speed position sensing and low latency haptic rendering results in a vivid sense of spatial tactile feature, unlike anything perceived on devices that exhibit longer finger position delays.
Keywords :
electrostatics; friction; haptic interfaces; rendering (computer graphics); vibrations; electrostatic attraction; finger position delay; friction force profile; friction reduction signal; glass plate; high-fidelity texture display; high-frequency textural content; high-speed noncontact position sensing; high-speed position sensing; low latency haptic rendering; programmable friction; real-time embedded controller; sine wave; spatial tactile feature; surface haptic display; ultrasonic frequency; ultrasonic out-of-plane vibration; Acoustics; Educational institutions; Friction; Haptic interfaces; Rendering (computer graphics); Sensors; Surface texture;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Haptics Symposium (HAPTICS), 2014 IEEE
Conference_Location :
Houston, TX
Type :
conf
DOI :
10.1109/HAPTICS.2014.6775549
Filename :
6775549
Link To Document :
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