DocumentCode :
1462863
Title :
What you can´t feel won´t hurt you: Evaluating haptic hardware using a haptic contrast sensitivity function
Author :
Salisbury, Curt M. ; Gillespie, R. Brent ; Tan, Hong Z. ; Barbagli, Federico ; Salisbury, J. Kenneth
Author_Institution :
Intell. Syst., Robot., & Cybern. Group, Sandia Nat. Labs., Albuquerque, NM, USA
Volume :
4
Issue :
2
fYear :
2011
Firstpage :
134
Lastpage :
146
Abstract :
In this paper, we extend the concept of the contrast sensitivity function - used to evaluate video projectors - to the evaluation of haptic devices. We propose using human observers to determine if vibrations rendered using a given haptic device are accompanied by artifacts detectable to humans. This determination produces a performance measure that carries particular relevance to applications involving texture rendering. For cases in which a device produces detectable artifacts, we have developed a protocol that localizes deficiencies in device design and/or hardware implementation. In this paper, we present results from human vibration detection experiments carried out using three commercial haptic devices and one high performance voice coil motor. We found that all three commercial devices produced perceptible artifacts when rendering vibrations near human detection thresholds. Our protocol allowed us to pinpoint the deficiencies, however, and we were able to show that minor modifications to the haptic hardware were sufficient to make these devices well suited for rendering vibrations, and by extension, the vibratory components of textures. We generalize our findings to provide quantitative design guidelines that ensure the ability of haptic devices to proficiently render the vibratory components of textures.
Keywords :
haptic interfaces; image texture; rendering (computer graphics); haptic contrast sensitivity function; haptic hardware; human detection thresholds; human observers; texture rendering; video projectors; voice coil motor; Accelerometers; Force; Haptic interfaces; Hardware; Humans; Software; Vibrations; Haptics; design; evaluation of haptic devices; haptic contrast sensitivity function (HCSF).; psychophysics; texture;
fLanguage :
English
Journal_Title :
Haptics, IEEE Transactions on
Publisher :
ieee
ISSN :
1939-1412
Type :
jour
DOI :
10.1109/TOH.2011.5
Filename :
5722959
Link To Document :
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