首页 /研究 /Motion planning for nonholonomic robots in a limited workspace
OTHER

Motion planning for nonholonomic robots in a limited workspace

Andrei M. Shkel, V. Lumelsky

发表年份
2002
引用次数
9

摘要

In this paper we pose the following two questions: Given two points, start and target, within a relatively small closed planar area W/spl sub/R/sup 2/, each with a prescribed direction of motion (orientation) in it, and assuming a possibility of reversals of motion: (i) What is the shortest path of bounded curvature that connects the points and lies completely in W? (ii) What is the minimum number of motion reversals (path cusps) one needs to arrive at the target point with the prescribed orientation? Such questions appear in various applications with nonholonomic motion constraints, as for example in motion planning for driverless cars. The proposed approach solves both problems. It makes use of a tool dubbed the reflective unfolding operator which has a clear geometric interpretation and provides an interesting means for solving other trajectory design problems.

关键词

Motion planningNonholonomic systemWorkspaceMotion (physics)Path (computing)TrajectoryOrientation (vector space)Computer scienceBounded functionPoint (geometry)

相关论文

查看 OTHER 分类全部论文