A Real-Time Algorithm for Accurate Collision Detection for Deformable Polyhedral Objects
- 1 February 1998
- journal article
- Published by MIT Press in PRESENCE: Virtual and Augmented Reality
- Vol. 7 (1) , 36-52
- https://doi.org/10.1162/105474698565514
Abstract
We propose an accurate collision detection algorithm for use in virtual reality applications. The algorithm works for three-dimensional graphical environments where multiple objects, represented as polyhedra (boundary representation), are undergoing arbitrary motion (translation and rotation). The algorithm can be used directly for both convex and concave objects and objects can be deformed (nonrigid) during motion. The algorithm works efficiently by first reducing the number of face pairs that need to be checked accurately for interference, by first localizing possible collision regions using bounding box and spatial subdivision techniques. Face pairs that remain after this pruning stage are then accurately checked for interference. The algorithm is efficient, simple to implement, and does not require any memory-intensive auxiliary data structures to be precomputed and updated. The performance of the proposed algorithm is compared directly against other existing algorithms, e.g., the separating plane algorithm, octree update method, and distance-based method. Results are given to show the efficiency of the proposed method in a general environment.Keywords
This publication has 12 references indexed in Scilit:
- Solving the collision detection problemIEEE Computer Graphics and Applications, 1994
- A real-time robot arm collision avoidance systemIEEE Transactions on Robotics and Automation, 1992
- Curved surfaces and coherence for non-penetrating rigid body simulationACM SIGGRAPH Computer Graphics, 1990
- Computational complexity versus virtual worldsACM SIGGRAPH Computer Graphics, 1990
- Realistic animation of rigid bodiesACM SIGGRAPH Computer Graphics, 1988
- Collision Detection and Response for Computer AnimationACM SIGGRAPH Computer Graphics, 1988
- A fast procedure for computing the distance between complex objects in three-dimensional spaceIEEE Journal on Robotics and Automation, 1988
- Localized set operations for solid modelingACM SIGGRAPH Computer Graphics, 1983
- Interference detection among solids and surfacesCommunications of the ACM, 1979
- A procedure to determine intersections between polyhedral objectsInternational Journal of Parallel Programming, 1972