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Cognitive Work Protection—A New Approach for Occupational Safety in Human-Machine Interaction

In: Information Systems and Neuroscience

Author

Listed:
  • Christian Neu

    (August-Wilhelm Scheer Institut)

  • Elsa Andrea Kirchner

    (Deutsches Forschungszentrum Für Künstliche Intelligenz, Robotics Innovation Center
    University of Bremen)

  • Su-Kyoung Kim

    (Deutsches Forschungszentrum Für Künstliche Intelligenz, Robotics Innovation Center)

  • Marc Tabie

    (Deutsches Forschungszentrum Für Künstliche Intelligenz, Robotics Innovation Center)

  • Christian Linn

    (August-Wilhelm Scheer Institut)

  • Dirk Werth

    (August-Wilhelm Scheer Institut)

Abstract

Previous occupational safety concepts in human-machine interaction scenarios are based on the principle of spatial separation, reduction of collision force or distance monitoring between humans and robots. Collaborative robot systems and semi-automated machines are working closely with people in more and more areas, both spatially and functionally. Therefor a new approach for occupational safety in close human-machine collaboration scenarios is presented. It relies on a real-time EEG measurement of human workers with brain computer interfaces and a subsequent adjustment of the robot system based on the detected cognitive states.

Suggested Citation

  • Christian Neu & Elsa Andrea Kirchner & Su-Kyoung Kim & Marc Tabie & Christian Linn & Dirk Werth, 2019. "Cognitive Work Protection—A New Approach for Occupational Safety in Human-Machine Interaction," Lecture Notes in Information Systems and Organization, in: Fred D. Davis & René Riedl & Jan vom Brocke & Pierre-Majorique Léger & Adriane B. Randolph (ed.), Information Systems and Neuroscience, pages 211-220, Springer.
  • Handle: RePEc:spr:lnichp:978-3-030-01087-4_26
    DOI: 10.1007/978-3-030-01087-4_26
    as

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