DocumentCode
3025600
Title
Fast, robust quadruped locomotion over challenging terrain
Author
Kalakrishnan, Mrinal ; Buchli, Jonas ; Pastor, Peter ; Mistry, Michael ; Schaal, Stefan
Author_Institution
Comput. Learning & Motor Control Lab., Univ. of Southern California, Los Angeles, CA, USA
fYear
2010
fDate
3-7 May 2010
Firstpage
2665
Lastpage
2670
Abstract
We present a control architecture for fast quadruped locomotion over rough terrain. We approach the problem by decomposing it into many sub-systems, in which we apply state-of-the-art learning, planning, optimization and control techniques to achieve robust, fast locomotion. Unique features of our control strategy include: (1) a system that learns optimal foothold choices from expert demonstration using terrain templates, (2) a body trajectory optimizer based on the Zero-Moment Point (ZMP) stability criterion, and (3) a floating-base inverse dynamics controller that, in conjunction with force control, allows for robust, compliant locomotion over unperceived obstacles. We evaluate the performance of our controller by testing it on the LittleDog quadruped robot, over a wide variety of rough terrain of varying difficulty levels. We demonstrate the generalization ability of this controller by presenting test results from an independent external test team on terrains that have never been shown to us.
Keywords
force control; learning systems; legged locomotion; optimisation; path planning; stability criteria; body trajectory optimizer; challenging terrain; control architecture; control strategy; fast robust quadruped locomotion; floating-base inverse dynamics controller; force control; learning; optimal foothold choices; optimization; planning; zero-moment point stability criterion; Foot; Force control; Leg; Legged locomotion; Mobile robots; Optimal control; Robust control; Robustness; Size control; Software testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Automation (ICRA), 2010 IEEE International Conference on
Conference_Location
Anchorage, AK
ISSN
1050-4729
Print_ISBN
978-1-4244-5038-1
Electronic_ISBN
1050-4729
Type
conf
DOI
10.1109/ROBOT.2010.5509805
Filename
5509805
Link To Document