• DocumentCode
    123135
  • Title

    ‘Hey robot, please step back!’ - exploration of a spatial threshold of comfort for human-mechanoid spatial interaction in a hallway scenario

  • Author

    Lauckner, M. ; Kobiela, F. ; Manzey, D.

  • Author_Institution
    Robert Bosch GmbH, Stuttgart, Germany
  • fYear
    2014
  • fDate
    25-29 Aug. 2014
  • Firstpage
    780
  • Lastpage
    787
  • Abstract
    Within the scope of the current research the goal was to develop an autonomous transport assistant for hospitals. As a sort of social robots, they need to fulfill two main requirements with respect to their interactive behavior with humans: (1) a high level of safety and (2) a behavior that is perceived as socially proper. One important element includes the characteristics of movement. However, state-of-the-art hospital robots rather focus on safe but not smart maneuvering. Vital motion parameters in human everyday environment are personal space and velocity. The relevance of these parameters has also been reported in existing human-robot interaction research. However, to date, no minimal accepted frontal and lateral distances for human-mechanoid proxemics have been explored. The present work attempts to gain insights into a potential threshold of comfort and additionally, aims to explore a potential interaction of this threshold and the mechanoid´s velocity. Therefore, a user study putting the users in control of the mechanoid was conducted in a laboratory hallway-like setting. Findings align with previously reported personal space zones in human-robot interaction research. Minimal accepted frontal and lateral distances were obtained. Furthermore, insights into a potential categorization of the lateral personal space area around a human are discussed for human-robot interaction.
  • Keywords
    control engineering computing; hospitals; human-robot interaction; medical robotics; mobile robots; motion control; autonomous transport assistant; hallway scenario; hospital robots; hospitals; human everyday environment; human-mechanoid proxemics; human-mechanoid spatial interaction; human-robot interaction research; interactive behavior; laboratory hallway-like setting; lateral personal space; mechanoid velocity; personal space zones; personal velocity; potential categorization; social robots; spatial threshold; vital motion parameters; Distance measurement; Hospitals; Human-robot interaction; Legged locomotion; Measurement by laser beam; Prototypes;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Robot and Human Interactive Communication, 2014 RO-MAN: The 23rd IEEE International Symposium on
  • Conference_Location
    Edinburgh
  • Print_ISBN
    978-1-4799-6763-6
  • Type

    conf

  • DOI
    10.1109/ROMAN.2014.6926348
  • Filename
    6926348