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Safe Robot Reflexes: A Taxonomy-based Decision and Modulation Framework

Vorndamme, Jonathan; Melone, Alessandro; Kirschner, Robin; Figueredo, Luis; Haddadin, Sami

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Authors

Jonathan Vorndamme

Alessandro Melone

Robin Kirschner

Profile image of LUIS FIGUEREDO

Dr LUIS FIGUEREDO LUIS.FIGUEREDO@NOTTINGHAM.AC.UK
Transitional Assistant Professor in Assistive Robotics

Sami Haddadin



Abstract

Recent advances in control and planning allow for seamless physical human-robot interaction (pHRI). At the same time, novel challenges appear in orchestrating intelligent decision-making and ensuring safe control of robots. Particularly in scenarios involving unforeseen or unintended collisions, robots face the imperative of reacting judiciously to avert potential risks to humans, other robots, obstacles, or themselves. At the same time, they need to maintain focus on their primary task or be able to safely resume it. Collision detection and identification algorithms are now well-established in industry, yet complex collision reflexes have not transitioned into industrial applications beyond basic stopping reactions. Despite the introduction of numerous advanced high-performance reflex controllers over the past decades, their real-world adoption has remained a challenge. This work establishes a systematic framework to address that gap. For this, the reflex control problem is defined, reflex behaviors are systematically classified and categorized, and relevant safety data is acquired following existing international standards . We argue that this foundational step is crucial for improving the safety and capabilities of robots in both complex industrial and domestic environments. We validate our approach within the system class of articulated manipulators through a state-of-the-art cooperative pick-and-place task, providing a blueprint for future implementations for other robot classes.

Citation

Vorndamme, J., Melone, A., Kirschner, R., Figueredo, L., & Haddadin, S. (2024). Safe Robot Reflexes: A Taxonomy-based Decision and Modulation Framework. IEEE Transactions on Robotics, 1-20. https://doi.org/10.1109/tro.2024.3519421

Journal Article Type Article
Acceptance Date Dec 1, 2024
Online Publication Date Dec 16, 2024
Publication Date Dec 16, 2024
Deposit Date Dec 22, 2024
Publicly Available Date Jan 6, 2025
Journal IEEE Transactions on Robotics
Print ISSN 1552-3098
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
Pages 1-20
DOI https://doi.org/10.1109/tro.2024.3519421
Keywords Robot Collision Handling, Robot Reflexes, Safety, Reflex Context Classification
Public URL https://nottingham-repository.worktribe.com/output/43359349
Publisher URL https://ieeexplore.ieee.org/document/10804590

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