@inproceedings{f36b8ea6336940e7a525e36e6c475f3b,
title = "Quantifying Uncertainties of Contact Classifications in a Human-Robot Collaboration with Parallel Robots",
abstract = "In human-robot collaboration, unintentional physical contacts occur in the form of collisions and clamping, which must be detected and classified separately for a reaction. If certain collision or clamping situations are misclassified, reactions might occur that make the true contact case more dangerous. This work analyzes data-driven modeling based on physically modeled features like estimated external forces for clamping and collision classification with a real parallel robot. The prediction reliability of a feedforward neural network is investigated. Quantification of the classification uncertainty enables the distinction between safe versus unreliable classifications and optimal reactions like a retraction movement for collisions, structure opening for the clamping joint, and a fallback reaction in the form of a zero-g mode. This hypothesis is tested with experimental data of clamping and collision cases by analyzing dangerous misclassifications and then reducing them by the proposed uncertainty quantification. Finally, it is investigated how the approach of this work influences correctly classified clamping and collision scenarios.",
keywords = "cs.RO, cs.SY, eess.SY, parallel robots, human-robot collaboration, data-driven modeling",
author = "Aran Mohammad and Hendrik Muscheid and Moritz Schappler and Thomas Seel",
note = "Publisher Copyright: {\textcopyright} The Author(s), under exclusive license to Springer Nature Switzerland AG 2024.; 16th International Workshop on Human-Friendly Robotics (HFR 2023), HFR 2023 ; Conference date: 20-09-2023 Through 21-09-2023",
year = "2024",
month = mar,
day = "10",
doi = "10.1007/978-3-031-55000-3\_10",
language = "English",
isbn = "978-3-031-54999-1",
series = "Springer Proceedings in Advanced Robotics (SPAR)",
publisher = "Springer",
number = "29",
pages = "137--150",
editor = "Cristina Piazza and Patricia Capsi-Morales and Luis Figueredo and Manuel Keppler and Hinrich Sch{\"u}tze",
booktitle = "Human-Friendly Robotics 2023",
edition = "1.",
}