IROS 2022poster13 citations

Immersive View and Interface Design for Teleoperated Aerial Manipulation

Basaran Bahadir Kocer, Harvey Stedman, Patryk Kulik, Izaak Caves, Nejra Van Zalk, Vijay M. Pawar, Mirko Kovac

Abstract

The recent momentum in aerial manipulation has led to an interest in developing virtual reality interfaces for aerial physical interaction tasks with simple, intuitive, and reliable control and perception. However, this requires the use of expensive subsystems and there is still a research gap between interface design, user evaluations and the effect on aerial manipulation tasks. Here, we present a methodology for low-cost available drone systems with a Unity-based interface for immersive FPV teleoperation. We applied our approach in a flight track where a cluttered environment is used to simulate a demanding aerial manipulation task inspired by forestry drones and canopy sampling. Through objective measures of teleoperation performance and subjective questionnaires, we found that operators performed worse using the FPV interface and had higher perceived levels of cognitive load when compared to traditional interface design. Additional analysis of physiological measures highlighted that objective stress levels and cognitive load were also influenced by task duration and perceived performance, providing an insight into what interfaces could target to support teleoperator requirements during aerial manipulation tasks.

BibTeX
@inproceedings{iros2022_immersiveviewand,
  title = {Immersive View and Interface Design for Teleoperated Aerial Manipulation},
  author = {Basaran Bahadir Kocer and Harvey Stedman and Patryk Kulik and Izaak Caves and Nejra Van Zalk and Vijay M. Pawar and Mirko Kovac},
  booktitle = {IROS 2022},
  year = {2022}
}
Immersive View and Interface Design for Teleoperated Aerial Manipulation · IROS 2022