Advances on Affordable Hardware Platforms for Human Demonstration Acquisition in Agricultural Applications

Fuente: arXiv
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Main Authors: San-Miguel-Tello, Alberto, Scarati, Gennaro, Hernández, Alejandro, Cavero-Vidal, Mario, Maroti, Aakash, García, Néstor
Format: Preprint
Published: 2025
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author San-Miguel-Tello, Alberto
Scarati, Gennaro
Hernández, Alejandro
Cavero-Vidal, Mario
Maroti, Aakash
García, Néstor
author_facet San-Miguel-Tello, Alberto
Scarati, Gennaro
Hernández, Alejandro
Cavero-Vidal, Mario
Maroti, Aakash
García, Néstor
contents This paper presents advances on the Universal Manipulation Interface (UMI), a low-cost hand-held gripper for robot Learning from Demonstration (LfD), for complex in-the-wild scenarios found in agricultural settings. The focus is on improving the acquisition of suitable samples with minimal additional setup. Firstly, idle times and user's cognitive load are reduced through the extraction of individual samples from a continuous demonstration considering task events. Secondly, reliability on the generation of task sample's trajectories is increased through the combination on-board inertial measurements and external visual marker localization usage using Extended Kalman Filtering (EKF). Results are presented for a fruit harvesting task, outperforming the default pipeline.
format Preprint
id arxiv_https___arxiv_org_abs_2506_09494
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Advances on Affordable Hardware Platforms for Human Demonstration Acquisition in Agricultural Applications
San-Miguel-Tello, Alberto
Scarati, Gennaro
Hernández, Alejandro
Cavero-Vidal, Mario
Maroti, Aakash
García, Néstor
Robotics
This paper presents advances on the Universal Manipulation Interface (UMI), a low-cost hand-held gripper for robot Learning from Demonstration (LfD), for complex in-the-wild scenarios found in agricultural settings. The focus is on improving the acquisition of suitable samples with minimal additional setup. Firstly, idle times and user's cognitive load are reduced through the extraction of individual samples from a continuous demonstration considering task events. Secondly, reliability on the generation of task sample's trajectories is increased through the combination on-board inertial measurements and external visual marker localization usage using Extended Kalman Filtering (EKF). Results are presented for a fruit harvesting task, outperforming the default pipeline.
title Advances on Affordable Hardware Platforms for Human Demonstration Acquisition in Agricultural Applications
topic Robotics
url https://arxiv.org/abs/2506.09494