• DocumentCode
    2691791
  • Title

    Robonaut 2 - The first humanoid robot in space

  • Author

    Diftler, M.A. ; Mehling, J.S. ; Abdallah, M.E. ; Radford, N.A. ; Bridgwater, L.B. ; Sanders, A.M. ; Askew, R.S. ; Linn, D.M. ; Yamokoski, J.D. ; Permenter, F.A. ; Hargrave, B.K. ; Piatt, R. ; Savely, R.T. ; Ambrose, R.O.

  • Author_Institution
    Johnson Space Center, NASA, Houston, TX, USA
  • fYear
    2011
  • fDate
    9-13 May 2011
  • Firstpage
    2178
  • Lastpage
    2183
  • Abstract
    NASA and General Motors have developed the second generation Robonaut, Robonaut 2 or R2, and it is scheduled to arrive on the International Space Station in early 2011 and undergo initial testing by mid-year. This state of the art, dexterous, anthropomorphic robotic torso has significant technical improvements over its predecessor making it a far more valuable tool for astronauts. Upgrades include: increased force sensing, greater range of motion, higher bandwidth, and improved dexterity. R2´s integrated mechatronic design results in a more compact and robust distributed control system with a fraction of the wiring of the original Robonaut. Modularity is prevalent throughout the hardware and software along with innovative and layered approaches for sensing and control. The most important aspects of the Robonaut philosophy are clearly present in this latest model´s ability to allow comfortable human interaction and in its design to perform significant work using the same hardware and interfaces used by people. The following describes the mechanisms, integrated electronics, control strategies, and user interface that make R2 a promising addition to the Space Station and other environments where humanoid robots can assist people.
  • Keywords
    aerospace robotics; dexterous manipulators; distributed control; humanoid robots; robust control; International Space Station; Robonaut philosophy; anthropomorphic robotic torso; astronauts; dexterous robot; humanoid robot; mechatronic design; robust distributed control; Actuators; Impedance; Joints; Robot sensing systems; Service robots;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Robotics and Automation (ICRA), 2011 IEEE International Conference on
  • Conference_Location
    Shanghai
  • ISSN
    1050-4729
  • Print_ISBN
    978-1-61284-386-5
  • Type

    conf

  • DOI
    10.1109/ICRA.2011.5979830
  • Filename
    5979830