DocumentCode
3709463
Title
Multiple contact planning for minimizing damage of humanoid falls
Author
Sehoon Ha;C. Karen Liu
Author_Institution
Department of Computer Science, Georgia Institute of Technology, 30308, USA
fYear
2015
fDate
9/1/2015 12:00:00 AM
Firstpage
2761
Lastpage
2767
Abstract
This paper introduces a new planning algorithm to minimize the damage of humanoid falls by utilizing multiple contact points. Given an unstable initial state of the robot, our approach plans for the optimal sequence of contact points such that the initial momentum is dissipated with minimal impacts on the robot. Instead of switching among a collection of individual control strategies, we propose a general algorithm which plans for appropriate responses to a wide variety of falls, from a single step to recover a gentle nudge, to a rolling motion to break a high-speed fall. Our algorithm transforms the falling problem into a sequence of inverted pendulum problems and use dynamic programming to solve the optimization efficiently. The planning algorithm is validated in physics simulation and experimentally tested on a BioloidGP humanoid.
Keywords
"Robots","Heuristic algorithms","Mathematical model","Planning","Computational modeling","Dynamic programming","Knee"
Publisher
ieee
Conference_Titel
Intelligent Robots and Systems (IROS), 2015 IEEE/RSJ International Conference on
Type
conf
DOI
10.1109/IROS.2015.7353756
Filename
7353756
Link To Document