DocumentCode
3392752
Title
Fast reactive path planning by 2D and 3D multi-layer spatial grids for mobile robot navigation
Author
Stopp, A. ; Riethmuller, T.
Author_Institution
Syst. Technol. Res., Daimler-Benz AG, Berlin, Germany
fYear
1995
fDate
27-29 Aug 1995
Firstpage
545
Lastpage
550
Abstract
Describes a new and fast path planning algorithm for sensor-based robot navigation. The goal of path planning is the computation of the fastest path from a start point to a destination point in a workspace. It should be able to react to unexpected obstacles by means of fast reactive replanning. The authors use a diffusion algorithm for multi-dimensional workspaces (e.g. 2D, 3D, etc.). Application of a multi-layer map which is permanently updated by new sensor information to intelligently select one of the possible paths distinguishes this approach from prior work in this field. The proposed diffusion algorithm is formulated in the data-parallel language C*; in the case of a 3D workspace there is a comparison between response time duration on a SUN Sparcstation 20 and a Connection machine CM-5 with 32 nodes
Keywords
intelligent control; mobile robots; navigation; path planning; 2D multi-layer spatial grids; 3D multi-layer spatial grids; C* data-parallel language; Connection machine CM-5; SUN Sparcstation 20; diffusion algorithm; mobile robot navigation; reactive path planning; unexpected obstacles; Delay; Intelligent sensors; Mobile robots; Navigation; Orbital robotics; Path planning; Remotely operated vehicles; Robot sensing systems; Space vehicles; Sun;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Control, 1995., Proceedings of the 1995 IEEE International Symposium on
Conference_Location
Monterey, CA
ISSN
2158-9860
Print_ISBN
0-7803-2722-5
Type
conf
DOI
10.1109/ISIC.1995.525112
Filename
525112
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