Home /Research /A Random Path Sampling-Based Method for Motion Planning in Many Dimensions
OTHER

A Random Path Sampling-Based Method for Motion Planning in Many Dimensions

Jing Xu, Yu He, Hongkun Tian, Zhe Wei

Year
2022
Citations
9

Abstract

In this article, we present Gaussian Random Paths Motion Planner (GRPMP), a method for solving robot motion planning problems. Compared with traditional sampling-based methods which build large-scale random trees or roadmaps by sampling random nodes in configuration spaces, GRPMP generates a set of smooth random paths discretized into sparse nodes, using a random path sampler based on the Gaussian process, to reduce resource space occupation and improve planning success rate. Employing the high-quality path-selecting strategy with the lazy collision checking technique, GRPMP can fast select the collision-free high-quality path that has the lowest cost in the set of smooth random paths, so as to improve the efficiency and quality of the motion planning. We present challenging experiments with GRPMP on pick-and-place tasks, using a humanoid robot, to show that GRPMP has the ability to find high-quality paths with efficiency and stability.

Keywords

Motion planningComputer sciencePath (computing)Sampling (signal processing)Motion (physics)Artificial intelligenceComputer visionRobot

Related papers

Browse all OTHER papers