Design and Control of an Omnidirectional Aerial Robot with a Miniaturized Haptic Joystick for Physical Interaction

Fuente: arXiv
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Main Authors: Mellet, Julien, Berra, Andrea, Marcellini, Salvatore, Soto, Miguel Ángel Trujillo, Heredia, Guillermo, Ruggiero, Fabio, Lippiello, Vincenzo
Format: Preprint
Published: 2024
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author Mellet, Julien
Berra, Andrea
Marcellini, Salvatore
Soto, Miguel Ángel Trujillo
Heredia, Guillermo
Ruggiero, Fabio
Lippiello, Vincenzo
author_facet Mellet, Julien
Berra, Andrea
Marcellini, Salvatore
Soto, Miguel Ángel Trujillo
Heredia, Guillermo
Ruggiero, Fabio
Lippiello, Vincenzo
contents Fully actuated aerial robot proved their superiority for Aerial Physical Interaction (APhI) over the past years. This work proposes a minimal setup for aerial telemanipulation, enhancing accessibility of these technologies. The design and the control of a 6-DoF joystick with 4-DoF haptic feedback is detailed. It is the first haptic device with standard Remote Controller (RC) form factor for APhI. By miniaturizing haptic device, it enhances RC with the sense of touch, increasing physical awareness. The goal is to give operators an extra sense, other than vision and sound, to help to perform safe APhI. To the best of the authors knowledge, this is the first teleoperation system able to decouple each single axis input command. On the omnidirectional quadrotor, by reducing the number of components with a new design, we aim a simplified maintenance, and improved force and thrust to weight ratio. Open-sourced physic based simulation and successful preliminary flight tests highlighted the tool as promising for future APhI applications.
format Preprint
id arxiv_https___arxiv_org_abs_2410_09003
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Design and Control of an Omnidirectional Aerial Robot with a Miniaturized Haptic Joystick for Physical Interaction
Mellet, Julien
Berra, Andrea
Marcellini, Salvatore
Soto, Miguel Ángel Trujillo
Heredia, Guillermo
Ruggiero, Fabio
Lippiello, Vincenzo
Robotics
Fully actuated aerial robot proved their superiority for Aerial Physical Interaction (APhI) over the past years. This work proposes a minimal setup for aerial telemanipulation, enhancing accessibility of these technologies. The design and the control of a 6-DoF joystick with 4-DoF haptic feedback is detailed. It is the first haptic device with standard Remote Controller (RC) form factor for APhI. By miniaturizing haptic device, it enhances RC with the sense of touch, increasing physical awareness. The goal is to give operators an extra sense, other than vision and sound, to help to perform safe APhI. To the best of the authors knowledge, this is the first teleoperation system able to decouple each single axis input command. On the omnidirectional quadrotor, by reducing the number of components with a new design, we aim a simplified maintenance, and improved force and thrust to weight ratio. Open-sourced physic based simulation and successful preliminary flight tests highlighted the tool as promising for future APhI applications.
title Design and Control of an Omnidirectional Aerial Robot with a Miniaturized Haptic Joystick for Physical Interaction
topic Robotics
url https://arxiv.org/abs/2410.09003