ICRA 201661 citations

The flying monkey: A mesoscale robot that can run, fly, and grasp

Yash Mulgaonkar, Brandon Araki, Je-Sung Koh, Luis Guerrero-Bonilla, Daniel M. Aukes, Anurag Makineni, Michael Thomas Tolley, Daniela Rus

Abstract

The agility and ease of control make a quadrotor aircraft an attractive platform for studying swarm behavior, modeling, and control. The energetics of sustained flight for small aircraft, however, limit typical applications to only a few minutes. Adding payloads - and the mechanisms used to manipulate them - reduces this flight time even further. In this paper we present the flying monkey, a novel robot platform having three main capabilities: walking, grasping, and flight. This new robotic platform merges one of the world's smallest quadrotor aircraft with a lightweight, single-degree-of-freedom walking mechanism and an SMA-actuated gripper to enable all three functions in a 30 g package. The main goal and key contribution of this paper is to design and prototype the flying monkey that has increased mission life and capabilities through the combination of the functionalities of legged and aerial robots.

BibTeX
@inproceedings{icra2016_theflyingmonkeya,
  title = {The flying monkey: A mesoscale robot that can run, fly, and grasp},
  author = {Yash Mulgaonkar and Brandon Araki and Je-Sung Koh and Luis Guerrero-Bonilla and Daniel M. Aukes and Anurag Makineni and Michael Thomas Tolley and Daniela Rus and Robert J. Wood and Vijay Kumar},
  booktitle = {ICRA 2016},
  year = {2016}
}
The flying monkey: A mesoscale robot that can run, fly, and grasp · ICRA 2016