Title :
A haptic-rendering technique based on hybrid surface representation
Author :
Kim, Laehyun ; Sukhatme, Gaurav S. ; Desbrun, Mathieu
Author_Institution :
Syst. Technol. Div., Korea Inst. of Sci. & Technol., Seoul, South Korea
Abstract :
A novel haptic rendering technique using a hybrid surface representation addresses conventional limitations in haptic displays. A haptic interface lets the user touch, explore, paint, and manipulate virtual 3D models in a natural way using a haptic display device. A haptic rendering algorithm must generate a force field to simulate the presence of these virtual objects and their surface properties (such as friction and texture), or to guide the user along a specific trajectory. We can roughly classify haptic rendering algorithms according to the surface representation they use: geometric haptic algorithms for surface data, and volumetric haptic algorithms based on volumetric data including implicit surface representation. Our algorithm is based on a hybrid surface representation - a combination of geometric (B-rep) and implicit (V-rep) surface representations for a given 3D object, which takes advantage of both surface representations.
Keywords :
computational geometry; haptic interfaces; rendering (computer graphics); solid modelling; 3D object; geometric haptic algorithm; haptic display device; haptic interface; haptic-rendering technique; hybrid surface representation; surface data; virtual 3D model; volumetric data; volumetric haptic algorithm; Computer displays; Equations; Friction; Haptic interfaces; Isosurfaces; Read-write memory; Solid modeling; Surface texture; Visual effects; Visualization; Algorithms; Computer Peripherals; Computer Simulation; Computing Methodologies; Feedback; Human Engineering; Image Interpretation, Computer-Assisted; Imaging, Three-Dimensional; Information Storage and Retrieval; Man-Machine Systems; Models, Theoretical; Online Systems; Paintings; Physical Stimulation; Sculpture; Stress, Mechanical; Touch; Transducers; User-Computer Interface;
Journal_Title :
Computer Graphics and Applications, IEEE
DOI :
10.1109/MCG.2004.1274064