IROS 2017poster12 citations

Towards autonomous navigation of multiple pocket-drones in real-world environments

Kimberly McGuire, Mario Coppola, Christophe de Wagter, Guido de Croon

Abstract

Pocket-drones are inherently safe for flight near humans, and their small size allows maneuvering through narrow indoor environments. However, achieving autonomous flight of pocket-drones is challenging because of strict on-board hardware limitations. Further challenges arise when multiple pocket-drones operate as a team and need to coordinate their movements. This paper presents a set-up that can achieve autonomous flight in an indoor environment with avoidance of both static obstacles and other pocket-drones. The pocket-drones use only on-board sensing and processing implemented on a STM32F4 microprocessor (168MHz). Experiments were conducted with two 40g pocket-drones flying autonomously in a real-world office while avoiding walls, obstacles, and each-other.

BibTeX
@inproceedings{iros2017_towardsautonomou,
  title = {Towards autonomous navigation of multiple pocket-drones in real-world environments},
  author = {Kimberly McGuire and Mario Coppola and Christophe de Wagter and Guido de Croon},
  booktitle = {IROS 2017},
  year = {2017}
}
Towards autonomous navigation of multiple pocket-drones in real-world environments · IROS 2017