A Voronoi-Based Hybrid Motion Planner for Rigid Bodies

Mark Foskey, Maxim Garber, Ming C. Lin, Dinesh Manocha · 2000

We present a hybrid path planning algorithm for rigid bodies translating and rotating in a 3D workspace. Our approach generates a Voronoi roadmap in the workspace and combines it with "bridges" computed by a randomized path planner with Voronoi-biased sampling. The Voronoi roadmap is computed from a discrete approximation to the generalized Voronoi diagram (GVD) of the workspace, which is generated using graphics hardware. By this use of the GVD, portions of the path can be generated without random sampling, substantially reducing the number of random samples needed for the full query. The planner has been implemented and tested on a number of benchmarks. Some preliminary comparisons with a randomized motion planner indicate that our planner performs more than an order of magnitude faster in several challenging scenarios. 1 Introduction Given an environment, computing a collision free trajectory for a rigid body from an initial configuration to a goal configuration is a classic probl...

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