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Multipartite RRTs for Rapid Replanning in Dynamic Environments

Matt Zucker, James Kuffner, Michael S. Branicky

Year
2007
Citations
268

Abstract

The rapidly-exploring random tree (RRT) algorithm has found widespread use in the field of robot motion planning because it provides a single-shot, probabilistically complete planning method which generalizes well to a variety of problem domains. We present the multipartite RRT (MP-RRT), an RRT variant which supports planning in unknown or dynamic environments. By purposefully biasing the sampling distribution and re-using branches from previous planning iterations, MP-RRT combines the strengths of existing adaptations of RRT for dynamic motion planning. Experimental results show MP-RRT to be very effective for planning in dynamic environments with unknown moving obstacles, replanning in high-dimensional configuration spaces, and replanning for systems with space time constraints.

Keywords

Motion planningMultipartiteRandom treeComputer scienceVariety (cybernetics)RobotMotion (physics)Mathematical optimizationArtificial intelligenceMathematics

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