• DocumentCode
    729935
  • Title

    A wearable fingertip haptic device with 3 DoF asymmetric 3-RSR kinematics

  • Author

    Leonardis, Daniele ; Solazzi, Massimiliano ; Bortone, Ilaria ; Frisoli, Antonio

  • Author_Institution
    PERCRO Lab., Scuola Superiore Sant´Anna, Pisa, Italy
  • fYear
    2015
  • fDate
    22-26 June 2015
  • Firstpage
    388
  • Lastpage
    393
  • Abstract
    A novel wearable haptic device for modulating skin stretch at the fingertip is presented. Rendering of skin stretch in 3 degrees of freedom (DoF), with contact - no contact capabilities, was implemented through rigid parallel kinematics. The novel asymmetrical three revolute-spherical-revolute (3-RSR) configuration allowed compact dimensions with minimum encumbrance of the hand workspace and minimum inter-finger interference. A differential method for solving the non-trivial inverse kinematics is proposed and implemented in real time for controlling the position of the skin tactor. Experiments involving the grasping of a virtual object were conducted using two devices (thumb and index fingers) in a group of 4 subjects: results showed that participants performed the grasping task more precisely and with grasping forces closer to the expected natural behavior when the proposed device provided haptic feedback.
  • Keywords
    haptic interfaces; interactive devices; kinematics; position control; 3-RSR configuration; asymmetrical three revolute-spherical-revolute configuration; degrees-of-freedom; differential method; haptic feedback; inter-finger interference; nontrivial inverse kinematics; position control; rigid parallel kinematics; skin stretch modulation; skin stretch rendering; skin tactor; three DoF asymmetric 3-RSR kinematics; virtual object grasping; wearable fingertip haptic device; Actuators; End effectors; Haptic interfaces; Joints; Kinematics; Rendering (computer graphics); Skin;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    World Haptics Conference (WHC), 2015 IEEE
  • Conference_Location
    Evanston, IL
  • Type

    conf

  • DOI
    10.1109/WHC.2015.7177743
  • Filename
    7177743