DocumentCode
927617
Title
Toward realistic haptic rendering of surface textures
Author
Choi, Seungmoon ; Tan, Hong Z.
Author_Institution
Haptic Interface Res. Lab., Purdue Univ., West Lafayette, IN, USA
Volume
24
Issue
2
fYear
2004
Firstpage
40
Lastpage
47
Abstract
New sophisticated haptic-rendering algorithms let users experience virtual objects through touch. We systematically investigate the unrealistic behavior of virtual haptic textures. The emerging science of haptic rendering consists of delivering properties of physical objects through the sense of touch. Owing to the recent development of sophisticated haptic-rendering algorithms, users can now experience virtual objects through touch in many exciting applications, including surgical simulations, virtual prototyping, and data perceptualization. Haptics holds great promise to enrich the sensory attributes of virtual objects that these systems can produce. One area that has received increasing attention in the haptics community is haptic texture rendering, the goal of which is to introduce micro-geometry-scale features on object surfaces. Haptic objects rendered without textures usually feel smooth, and sometimes slippery. Appropriate haptic textures superimposed on haptic objects enhance an object´s realism.
Keywords
haptic interfaces; image texture; rendering (computer graphics); touch (physiological); virtual reality; data perceptualization; haptic-rendering algorithm; micro-geometry-scale feature; realistic haptic rendering; surface texture; surgical simulation; touch sense; virtual haptic texture; virtual object; virtual prototyping; Computational modeling; Databases; Haptic interfaces; Humans; Physics; Psychology; Rendering (computer graphics); Resonance; Surface texture; Virtual environment; Algorithms; Computer Peripherals; Computer Simulation; Computing Methodologies; Feedback; Human Engineering; Humans; Information Storage and Retrieval; Man-Machine Systems; Models, Biological; Online Systems; Perception; Physical Stimulation; Stress, Mechanical; Telemedicine; Touch; Transducers; User-Computer Interface;
fLanguage
English
Journal_Title
Computer Graphics and Applications, IEEE
Publisher
ieee
ISSN
0272-1716
Type
jour
DOI
10.1109/MCG.2004.1274060
Filename
1274060
Link To Document