IROS 2016poster11 citations

Optimal control for geometric motion planning of a robot diver

Roberto Shu, Avinash Siravuru, Akshara Rai, Tony Dear, Koushil Sreenath, Howie Choset

Abstract

Inertial reorientation of airborne articulated bodies has been an active area of research in the robotics community, as this behavior can help guide dynamic robots to a safe landing with minimal damage. The main objective of this work is emulating the aggressive and large angle correction maneuvers, like somersaults, that are performed by human divers. To this end, a planar three link robot, called DiverBot, is proposed. By considering a gravity-free scenario, a local connection is obtained between joint angles and the body orientation, resulting in a reduction in the system dynamics. An optimal control policy applied on this reduced configuration space yielded diving maneuvers that are dynamically feasible. Numerical results show that the DiverBot can execute one somersault without drift and multiple somersaults with minimal drift.

BibTeX
@inproceedings{iros2016_optimalcontrolfo,
  title = {Optimal control for geometric motion planning of a robot diver},
  author = {Roberto Shu and Avinash Siravuru and Akshara Rai and Tony Dear and Koushil Sreenath and Howie Choset},
  booktitle = {IROS 2016},
  year = {2016}
}
Optimal control for geometric motion planning of a robot diver · IROS 2016