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A Practical Comparison of Motion Planning Techniques for Robotic Legs in Environments with Obstacles

Tristan B. Smith, Daniel Chavez‐Clemente

Year
2009
Citations
5

Abstract

ATHLETE is a large six-legged tele-operated robot. Each foot is a wheel; travel can be achieved by walking, rolling, or some combination of the two. Operators control ATHLETE by selecting parameterized commands from a command dictionary. While rolling can be done efficiently, any motion involving steps is cumbersome - each step can require multiple commands and take many minutes to complete. In this paper, we consider four different algorithms that generate a sequence of commands to take a step. We consider a baseline heuristic, a randomized motion planning algorithm, and two variants of A* search. Results for a variety of terrains are presented, and we discuss the quantitative and qualitative tradeoffs between the approaches.

Keywords

Computer scienceMotion planningHeuristicMotion (physics)RobotParameterized complexityBaseline (sea)TrajectoryVariety (cybernetics)Artificial intelligence

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