Motion planning for a rigid body using random networks on the medial axis of the free space
Authors: Steven A. Wilmarth, Nancy M. Amato, Peter F. Stiller
Venue: Proceedings of the Annual Symposium on Computational Geometry (SOCG)
DOI: 10.1145/304893.304967
Link to Publication
Abstract:
Several motion planning methods using networks of randomly generated nodes in the free space have been shown
to perform well in a number of cases, however their performance
degrades when paths are required to pass through narrow
passages in the,jree space. In [16] we proposed MAPRM,
a method of sampling the configuration space in which randomly
generated configurations, free or not, are retracted
onto the medial axis of the free space without having to first
compute the medial axis; this was shown to increase sampling
in narrow passages. In this paper we give details of
the MAPRM algorithm for the case of a free-flying rigid
body moving in three dimensions, and show that the retraction
may be carried out without explicitly computing the C-obstacles
or the medial axis. We give theoretical arguments
to show that this improves sampling in narrow corridors, and
present preliminary experimental results comparing the performance
to uniform random sampling from the free space.
@INPROCEEDINGS{was-mprb-99,
author={Steven A. Wilmarth and and Nancy M. Amato and Peter F. Stiller},
booktitle={Proceedings of the Annual Symposium on Computational Geometry}
title={Motion Planning for a Rigid Body Using Random Networks on the Medial Axis of the Free Space},
year={1999},
pages={173-180},
doi={10.1145/304893.304967}}